法拉第讨论博客 网址://www.xcmww.com/fd 星期二,2018年11月13日15:11:01+0000 en美国 每小时 https://wordpress.org/?V= 4.9 等离子体和催化中的热电子科新利手机客户端学和微观过程-海报摘要截止日期12月10日 //www.xcmww.com/fd/2018/11/13/hot-electron-新利手机客户端science-and-microcal-processes-in-plasmonics-and-catalysis-paster-abstract-deadline-10-12月/ //www.xcmww.com/fd/2018/11/13/hot-electron-新利手机客户端science-and-microcal-processes-in-plasmonics-and-catalysis-paster-abstract-deadline-10-december/回复 星期二,2018年11月13日14:58:17+0000 希瑟·蒙哥马利,副编辑 征文 会议 化学通讯 法拉第 纳米尺度 PCCP //www.xcmww.com/fd/?P=1895 12月10日前提交海报摘要并参加讨论 <p><img class=“AlignRight size medium wp-image-1765”src=“//www.xcmww.com/fd/files/2018/07/v18_co_fd-hot-electron-s新利手机客户端cience---u 600x500_web-300x250.jpg”alt=“”width=“300”height=“250”srcset=“//www.xcmww.com/fd/files/2018/07/v18_co_fd-hot-electron-science---u 600x500_web-300x250.jpg 300W,//www.xcmww.com/fd/files/2018/07/v18_co_fd-hot-electron-新利手机客户端science---u 600x500_web.jpg 600w“尺寸=”(最大宽度:300px)100vw,300px“/>我们很高兴与您分享一系列已接受的手稿,这些手稿将在即将到来的法拉第讨论会上讨论。<em>meeting on<a href=“http://www.rsc.org/events/detail/27637/hot electron science and microscor processes in plasmonics and catalysis faraday discussion”>hot electron science 新利手机客户端and microscor processesSes in Plasmaronics and Catalysis,我们非常希望您喜欢阅读这些文章,并且您将与我们一起向包括Jeremy Baumberg在内的主要科学家展示您自己的研究海报,Naomi Halas哈维尔·艾兹普鲁亚,Alexandra Boltasseva和更多。<br/><strong><a href=“http://www.rsc.org/events/detail/27637/hot electron science and 新利手机客户端microscore processes in plasmaronics and catalysis faraday discussion abstract submission“>Submit a poster abstract.<a>by 10 december.<strong><p><strong>read this selection of accepted manuscripts which will be presented iN London:<strong><p><a href=“http://dx.doi.org/10.1039/c8fd00149a”><strong>direct optical invigation of dark plasmons for hot electron generation<strong><a><br/>niclas a m_ler,布鲁诺GM维埃拉,多米尼克H,弗洛里安·舒尔茨,Eduardo Bed_Barros,Holger Lange and Stephanie Reich<p><p><a href=“http://dx.doi.org/10.1039/c8fd00136g”><strong>Enhanced Hot Electron Generation by Inverse Metal–Oxide Interfaces on Catalyst Nanodiode.<strong><a><br/>Hyoson Lee,Sinmyung Yoon金沃乔,Beomjoon Jeon大川贤,广安和郑业。park<p><p><a href=“http://dx.doi.org/10.1039/c8fd00142a”><strong>the role of a plasmonic substrate on the enhancement and space resolution of tip enhanced raman distraction<strong><a><br/>mahfujur rahaman,亚力山大GMilekhin阿什图什·穆克吉,E e Rodyakina,亚历山大·拉蒂舍夫,Volodymyr Dzhagan and Dietrich RT Zahn</p><p><a href=“http://dx.doi.org/10.1039/c8fd00147b”><strong>assistance of metal nandos to photo catalysis–nothing more than a classic heat source</strong><br/>yonatan sivan,ieng wai un and yoni dubi.<p><p><a href=“http://dx.doi.org/10.1039/c8fd00153g”><strong>out of balancial electron dynamics of silver driven by superfast electronic fields–a novel hydrodynamic approach.<strong><a><br/>Andrea Marini,alessandro ciattoni and claudio conti<p><a href=“http://dx.doi.org/10.1039/c8fd00137e”><strong>Electron-induced molecular disociation at a surface leads to reactive collisions at selected impact parameters.<strong><a><br/>john c polanyi,Kelvin AnggaraLydie LeungMatthew J Timm and Hu Zhixin</p><p><a href=“http://dx.doi.org/10.1039/c8fd00145f”><strong>Generation of Hot Electrones in Nanostructures incorporating conventional and non-ventional plasonic materials.<strong><a><br/>Tianji Liu,卢卡斯诉。Besteiro王志明和奥亚历山大。Govorov<p><a href=“http://dx.doi.org/10.1039/c8fd00151k”><strong>Impact of Chemical Interface Damping on Surface Plasmalon Dephasing.<strong><a><br/>Andrew J.塞里恩马修J。羽衣甘蓝,林园张超Naomi J Halas and Phillip Christopher</p><p><a href=“http://dx.doi.org/10.1039/c8fd00138c”><strong>monitoring plasmatronic hot carrier chemical reactions at the single particle level.<strong><a><br/>sabrina simoncelli,伊万杰琳娜·彭萨,Thomas Brick朱利安·加朱洛,阿尔贝托·劳里,贾维尔·坎比亚索,Yi Li斯特凡AMaier and Emiliano Cortes<p><div class=“lightsocial_container”><a 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class=“lightsocial_a”href=“http://www.google.com/buzz/post”?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f11%2f13%2fhot-electron-science-and-microscope-processes-in-plasmaronics-and-catalysis-paster-abstract-deadline-10-december%2f“><img class=“light social”img“src=”//www.xcmww.com/fd/wp-content/plugins/light-social/google_buzz.png“alt=”google buzz(aka)。google reader)“title=”google buzz(aka.google reader)“/>.<a>.<div> //www.xcmww.com/fd/2018/11/13/hot-electron-新利手机客户端science-and-microcal-processes-in-plasmonics-and-catalysis-paster-abstract-deadline-10-december/feed/ 复杂系统中的量子效应-口头截止日期2018年12月19日 //www.xcmww.com/fd/2018/10/02/quantum-effects-in-complex-systems-oral-deadline-19-12-2018/ //www.xcmww.com/fd/2018/10/02/quantum-effects-in-complex-systems-oral-deadline-19-december-2018/回复 星期二,2018年10月2日09:37:08+0000 希瑟·蒙哥马利,副编辑 征文 会议 新闻 化学通讯 法拉第 法拉第讨论 PCCP //www.xcmww.com/fd/?P=1883 我们很高兴地看到最近在一系列皇家化学学会期刊上发表的一些优秀的研究,这些期刊涵盖了复杂系统中量子效应领域的激动人心的发展。新利手机客户端你可以和包括海伦·菲尔丁(UCL)在内的演讲者讨论这个令人兴奋的领域的最新进展。格雷格·斯科尔斯(普林斯顿大学)莎伦[…] <p><a a href=“http://dx.doi.org/10.1039/C8CP25744f”><img class=“Alignrightwp-image-1885”src=“http://blog.rsc.org/fd/file/2018/10/v18_co-fd-quant-effe-in-复杂-系统ueven-ban-600px-x-500px web-300x 250.jpg”alt=“”宽度=“300”height=“250”srcsset=“http://blog.rsc.org/fd/文件/2018/10/10/v18_co-ffd-量子-影响-in-复杂-复杂-复杂-复杂-复杂-复杂-复杂-复杂-复杂-复杂-复杂-复杂-复杂-复杂-复杂-复杂-复杂-系统”even-even-系统事件S-BANNER-600px-x-500px_web-300x250.jpg 300w,,//www.xcmww.com/fd/files/2018/10/v18_co_fd-quantum-effects-in-complex-systems_events-banner-600px-x-500px_web.jpg 600w“size=”(最大宽度:300px)100vw,300px“/></a>我们很高兴地强调最近在一系列皇家化学学会期刊上发表的一些优秀的研究,这些期刊涵盖了复杂系统中量子效应领域的激动人心的发展。<p><p>You can get involved in discusning the新利手机客户端 latest developments in this engineering are a with<a href=“http://www.rsc.org/events/detaIL/30710/复杂系统中的量子效应法拉第讨论演讲者“>演讲者</a>包括Helen Fielding(UCL),格雷格·斯科尔斯(普林斯顿大学)Sharon Hammes Schiffer(耶鲁大学)大卫马诺洛普洛斯(牛津大学)和更多。提交摘要以供<a href=“http://www.rsc.org/events/detail/30710/quantum effects in complex systems faraday discussion”>quantum effects in complex system:faraday discussion。在考文垂的这一事件,英国将于2019年9月11日至13日解决理解复杂核量子效应的挑战,许多粒子系统,这可以为光合作用提供洞见,材料中的质子和电子输运,在酶催化反应中进行隧道挖掘<em>etc.<em>><p>><p>><p>><p style=“text-align:center”><strong>><span style=“font-size:12pt”><a href=“http://www.rsc.org/events/detail/30710/quantum effects in complex systems faraday discussion”abstract submission“>Submit your abstract by 19 december.<a>and get involved!<span><br/>.<strong>><p>><p>><p>><p>><strong>read this selection of reviews and original research:<strong>><p>><span style=“color:35; ff6600”><strong>open access.<strong>><br/><a href=“http://dx.doi.org/10.1039/c7cs00627f”><strong>using time-resolved光电子能谱to unravel the electronic relaxy dynamics of photoexceered分子菲尔丁和格雷厄姆。价值<br/><em>chem.SOC。牧师</EM>2018,<strong>47<strong>,309–321</p><p><a href=“http://dx.doi.org/10.1039/c8cp0372j”><strong>interfaceing tetrapyridyl-c<sub>60</sub>with pherkin dimers<em>via</em>π-couplated bridges:artificial photosynthetic systems with superfast charge separation.<strong><a><br/>Christina Stangel,Fabian Plass查理西亚迪斯,艾曼诺伊尔·吉安诺迪斯,乔治奥斯·夏拉拉兰比迪斯,Kostas KarikisGeorgios Rotas加拉提亚Zervaki尼克塔罗斯Lathiotakis尼科斯·塔马塔奇,Axel Kahnt和Athanassios G.coutsolelos<br/><em>phys.化学。化学。Phys,</EM>2018,<strong>20<strong>,21269–21279</p><p><span style=“color:ff6600”><strong>open access.<strong><span><br/><a href=“http://dx.doi.org/10.1039/c8sc00293b”><strong>Stringing the right balance of intermolecular coupling for high-efficiency singlet sprintical.<strong><a><br/>ryan d.Pensack安德鲁J。Tilley克里斯托弗·格里科,杰弗里E。珀杜姆叶夫根尼EOstroumov德文B.Granger丹尼尔GOblinsky雅各布C。院长,格雷森S杜塞特约翰·B阿斯伯里岳林洛,德怀特S.Seferos约翰E安东尼和格雷戈里D。Scholes<br/><em>Chem.SCI.<2018,<strong>9<strong>,6240–6259</p><p><span style=“color:ff6600”><strong>open access</strong><span><br/><a href=“http://dx.doi.org/10.1039/c8cp02574f”><strong>deciphering hot-and multi exciton dynamics in core–shell qds by 2d electronic spectroscopies.<strong><a><br/>marcello righeto,Luca Bolzonello,Andrea Volpato乔丹诺·阿莫鲁索,安娜玛丽亚·潘尼洛,伊丽莎白·法尼扎,marinella striccolli and elisabetta collini<br/><em>phys.化学。化学。Phys,</EM>2018,<strong>20<strong>,18176–18183</p><p><a href=“http://dx.doi.org/10.1039/c8cc04703k”><strong>同位素效应on the spin dynamics of single-molecular磁铁probed using muon spin spectroscopy.<strong><a><br/>lorenzo tesi,扎尔·萨尔曼,Irene CimattiFabrice Pointillart公司,Kevin BernotMatteo Manni和Roberta Sessoli<br/><em>Chem.公社。<em>,2018,<strong>54<strong>,7826–7829</p><p><span id=“more-1883”><span><p><a href=“http://dx.doi.org/10.1039/c8cc04189j”><span style=“color:ff6600”><strong>open access.<strong><span><br/><a><a href=“http://dx.doi.org/10.1039/c8sc00072g”><strong>azobene as a photoregulator covalently attached to rna:a quantum mechanics/molecular mechanics surface hopping dynamICS研究乔瓦尼·格兰努奇,多米尼克·拉斯特·德特,Maurizio Persico and Irene Burghardt<br/><em>Chem.SCI.<2018,<strong>9<strong>,4671–4681</p><p><a href=“http://dx.doi.org/10.1039/c8cc04189j”><strong>超快质子辅助隧道通过zro<sub>2<sub>in Dye-敏化sno<sub>2<sub>-core/zro<sub>2<sub>-shell films<strong><a><br/>john r.Swierk尼古拉斯SMcCool杰森A。R HR,Svante Hedstr_m,史提芬J。Konezny科林TNemes彭涛旭维克多S.巴蒂斯塔,托马斯E马洛克和查尔斯A。Schmuttenmaer<br/><em>chem.公社。<em>,2018,<strong>54<strong>,7971–7974</p><p><span style=“color:ff6600”><strong>open access</strong><span><br/><a href=“http://dx.doi.org/10.1039/c7sc04814a”><strong>impact of the lipid bilayer on energy transfer dynamic in the photossynthetic protein lh2.<strong><a><br/>john i.食人魔,艾希礼L用钳子钳起,塞缪尔C戈登阿尤莉亚-陈努,Yue Lu罗伯特E。布兰肯希普曹建树和加百利。Schlau Cohen<br/><em>Chem.SCI.<2018,<strong>9<strong>,3095–3104</p><p><span style=“color:ff6600”><strong>open access</strong><span><br/><a href=“http://dx.doi.org/10.1039/c7sc02983g”><strong>on the performance of a photosystem II reaction centre based photocell.<strong><a><br/>Richard Stones,何大何西因内贾德,Rienk van Grondelle and Alexandra Olaya Castro<br/><em>Chem.SCI.<2017,<strong>8<strong>,6871–6880</p><p><a href=“http://dx.doi.org/10.1039/c6cp07431f”><strong>shape and crystalographic orientation of nanomdiamonds for quantum sensing.<strong><a><br/>y.OngMChipauxA.NAGL和R。Schirhagl<br/><em>phys.C</em><em>hem.化学。Phys,</EM>2017,<strong>19<strong>,10748–10752</p><p><span style=“color:ff6600”><strong>open access</strong><span><br/><a href=“http://dx.doi.org/10.1039/c6sc03833f”><strong><em>ortho</em><strong>and<em>para</em>chromophores of green fluoring protein:controlling electron emission and internal conversion</strong><br/>conor mclaughlin,玛丽安娜·阿斯曼,米迦勒A帕克斯乔安妮LWoodhouseRoss Lewin海伦C。Hailes格雷厄姆A沃思和海伦H。fielding<br/><em>chem.SCI.<2017,<strong>8<strong>,1621–1630</p><p><a href=“http://dx.doi.org/10.1039/c6fd00122j”><strong>质子耦合电子转移反应:分析速率常数和脂质氧合酶中动力学同位素效应的案例研究</strong><a><br/>Alexander V.soudackov and sharon hammes schiffer<br/><em>faraday discus.<em>,2016,<strong>195<strong>,171–189<<div class=“lightsocial_container”><a class=“lightsocial_a”href=“http://digg.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f10%2f02%2fquantum-effects-in-complex-systems-oral-deadline-19-december-2018%2f&title=quantum+effects+in+complex+systems+-+oral+deadline+19+december+2018“><img class=“light social\u img”src=“//www.xcmww.com/fd/wp-content/plugins/light-social/digg.png”alt=“digg this”title=“digg this”/>=<a>>ass=“lightsocial_a”href=“http://www.reddit.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f10%2f02%2fquantum-effects-in-complex-systems-oral-deadline-19-december-2018%2f&title=quantum+effects+in+complex+systems+-+oral+deadline+19+december+2018“><img class=“light social\u img”src=“//www.xcmww.com/fd/wp-content/plugins/light-social/reddit.png”alt=“reddit this”title=“reddit this”/><<a 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on technorati“/><a>”//twitter.com/home?status=reading+http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f10%2f02%2fquantum-effects-in-complex-systems-oral-deadline-19-december-2018%2f“><img class=“light social”img“src=”//www.xcmww.com/fd/wp-content/plugins/light-social/twitter.png“alt=”post on twitter“title=”post on twitter“/><a class=”light social_a“href=”http://www.google.com/嗡嗡声/邮筒?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f10%2f02%2fquantum-effects-in-complex-systems-oral-deadline-19-december-2018%2f“><img class=“light social”src=“//www.xcmww.com/fd/wp-content/plugins/light-social/google_buzz.png”alt=“google buzz(aka)。google reader)“title=”google buzz(aka.google reader)“/>.<a>.<div> //www.xcmww.com/fd/2018/10/02/quantum-effects-in-complex-systems-oral-deadline-19-december-2018/feed/ 人工水道——阅读所有文章和讨论 //www.xcmww.com/fd/2018/10/01/artificial-water-channels-read-all-the-articles-and-discussions网站/ //www.xcmww.com/fd/2018/10/01/人工水道阅读所有文章和讨论/回复 周一,2018年10月1日10:26:44+0000 希瑟·蒙哥马利,副编辑 会议 热门文章 新闻 化学通讯 法拉第讨论 杰姆斯切姆 PCCP 聚合物 //www.xcmww.com/fd/?P=1875 查看格拉斯哥法拉第讨论会上的论文和讨论 <p>我们很高兴在<a href=“https://pubs.rsc.org/en/journals/journalissues/fd”上分享文章和讨论!issueid=fd018209&type=current&issnprint=1359-6640“>人工水道</a>published in our latest volume of<em>Faraday discussions<img class=“AlignRight size full wp-image-1876”src=“//www.xcmww.com/fd/files/2018/10/fd018209.jpg”alt=“”width=“148”height=“219”/></em><p>highlights include:<p><p><span style=“color:ff6600”><strong>open access<strong><span><br/><a href=“http://dx.doi.org/10.1039/c8fd00122g”><strong>single file transport of water through membrane channels<strong><a><br/>Andreas Horner and Peter Pohl<br/><em>Faraday discus<em>,2018,<strong>209<strong>,9–33</p><p><a href=“http://dx.doi.org/10.1039/c8fd00021b”><strong>Hyperpolarised NMR to follow water proton transport through film channels<em>via</em>exchange with biomolecules.<strong><a><br/>viorel nastasa,克里斯蒂娜·斯塔瓦拉赫,安娜玛丽亚·汉加努,Adina CoroabaAlina Nicolescu,卡林德莱努,Aude Sadet和Paul R.血管<br/><em>faraday discus.<em>,2018,<strong>209<strong>,67–82</p><p><span style=“color:ff6600”><strong>open access</strong><span><br/><a href=“http://dx.doi.org/10.1039/c8fd00013a”><strong>water and austratish gates in ion channels and nanopholes</strong><a><br/>shanlin rao,夏洛特岛Lynch吉安尼·克莱斯,佐治亚州奥克利,菲利浦J。Stansfeld史蒂芬J。塔克和马克。P.sansom<br/><em>faraday discus.<em>,2018年,<strong>209<strong>,231–247</p><p><span style=“color:ff6600”><strong>open access</strong><span><br/><a href=“http://dx.doi.org/10.1039/c8fd00011e”><strong>Molecular dynamics Simulations of carbon nanotube porins in lipid bilayers.<strong><a><br/>Martin v_gele,J_rgen k_finger and gerhard hummer<br/><em>Faraday discussion.<em>,2018,<strong>209<strong>,341–358</p><p><a href=“http://dx.doi.org/10.1039/c8fd00132d”><strong>人工水渠:灵感,进展,和挑战2018,<strong>209<strong>,415–427</p><p>我们希望您喜欢阅读文章。为什么不加入我们的活动呢?searchText=faraday&eventtype=3&rsc=1&memberNetworkOptions=116&pageTitle=178“>即将到来的faraday讨论</a>让自己参与进来!<p><p style=“text-align:center”>Don't miss your chance to submit an abstract for<strong><a href=“http://rsc.li/soft-lithography-fd2019”>Nanolithography of BioInterfaces<a><strong><p style=“text-align:center”><strong>Oral Abstract Deadline:2018年10月11日</strong><div class=“lightsocial_container”><a class=“lightsocial_a”href=“http://digg.com/submit?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f10%2f01%2ffaurial water channels read all the articles and discussions%2f&title=aferial+water+channels+-+read+all+the+articles+and+discussions“><img class=“light social”img“src=“//www.xcmww.com/fd/wp-content/plugins/light-social/digg.png”alt=“digg this”title=“digg”/>=<a><a class=“lightsocial”href=“http://www.reddit.com/submit?”url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f10%2f01%2人工水道读取所有文章和讨论%2f&title=automatic+water+channels+-+read+all+the+articles+and+discussions“><img class=“light social”img“src=“//www.xcmww.com/fd/wp-content/plugins/light-social/reddit.png”alt=“reddit 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a”href=“http://www.google.com/buZZ/POST?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f10%2f01%2人工水渠阅读所有文章和讨论%2f“><img class=“light social_img”src=“//www.xcmww.com/fd/wp-content/plugins/light-social/google_buzz.png”alt=“google buzz(aka)。google reader)“title=”google buzz(aka.google reader)“/>.<a>.<div> //www.xcmww.com/fd/2018/10/01/artificial-water-channels-read-all-the-articles-and-discussions/feed/ 生物界面的纳米光刻-口头摘要截止日期10月11日 //www.xcmww.com/fd/2018/09/13/nanothography-of-bioiinterfaces-oral-abstract-deadline-11-10月/ //www.xcmww.com/fd/2018/09/13/nanothography-of-bioiinterfaces-oral-abstract-deadline-11-10月/response 清华大学,2018年9月13日12:59:34+0000 希瑟·蒙哥马利,副编辑 会议 热门文章 新闻 化学通讯 法拉第 杰姆斯切姆 //www.xcmww.com/fd/?P=1838 加入Peter Seeberger,伊莉莎里多,十妃子劳拉·基斯林,Yoshiko Miura訾建正还有更多的讨论这个迷人领域的最新研究 <p><img class=“AlignRight size medium wp-image-1859”src=“//www.xcmww.com/fd/files/2018/09/v18-co-fd-understanding-and-rebuiltin-bioi-web_300x250-300x250.jpg”alt=“”width=“300”height=“250”/>我们将在我们的网站上讨论生物界面纳米光刻技术的一些最新进展会议/fd/光化学-fd2015/index.asp“><em>Faraday Discussions<em>meeting<a>in London,新利手机客户端英国,2019年7月3日至5日。<p>辩论主题包括多维微型和纳米打印技术,多价聚糖微阵列和纳米阵列的制备,糖萼模拟表面上的聚糖相互作用,以及表面功能化和特征化。<p>我们的计划包括一个<a href=“http://www.rsc.org/events/detail/28780/understanding-and-rebuilting-bioiinterfaces-with-3d-soft-nanoplithography-faraday-discussion speakers”>Excellent line-up of speakers</a>:<p><ul><li><strong>peter seeberger</strong>(max planck institute of c(Elisa Riedo)/强〉(NY-TANDN工程学院),</L>>LI> <强十>FiZi<S/强>(帝国理工学院),</L> < LI> <强> Laura Kiessling > /强>(MIT)</L> < L> >强> Yoshiko Miura < /强>(九州大学),</L> < LI> <强>訾建正< /强>(香港理工大学)<li><li>and many more…<li><ul><p><p><p style=“text-align:center”><span style=“font-size:14pt”>we hope you can join us<strong>:<a href=“http://www.rsc.org/events/detail/28780/nanophylith of bioiinterfaces法拉第讨论abstract submission“>submit your oral abstract by 11 october.<a>!在这期间,我们收集了一些最近在这一地区的文章,这些文章来自英国皇家化学学会的Porfolio to whet your openess。新利手机客户端阅读愉快!<p><p><strong><a href=“http://dx.doi.org/10.1039/c7cs00192d”>Chemical formation of Soft metal electors for flexible and wearable electronics.<a><br/>Dongrui wang,姚康张Xi Lu支俊玛川泻、紫建正<br/><strong><em>chem.SOC。rev.<em>.<strong>,2018,<strong>47<strong>,4611-4641</p><p><strong><a href=“http://dx.doi.org/10.1039/c8cs00342d”>万能磷烯:A next-generation,多学科生物医学应用的二维纳米平台文秀仁,Taeho Jeong米亚赢了,根杨公园,David Kipkemoi桑,刘丽萍,韩章和金正盛<br/><strong><em>chem.SOC。rev.<em>.<strong>,2018,<strong>47<strong>,5588-5601<<p><strong><a href=“http://dx.doi.org/10.1039/c6cs00349d”>Towards scanning probe lithography based 4d nanoprinting by advancing surface che新利手机客户端mistry,纳米图案化策略,和特征化协议卡洛斯·卡博内尔和亚当·B。布伦瑞克SOC。rev.<em>.<strong>,2016,<strong>45<strong>,6289-6310</p><p><strong><a href=“http://dx.doi.org/10.1039/c5cs00793c”>Toward dial-a-moleum by integrating continuous flow,分析和自我优化SOC。rev.<em>.<strong>,2016,<strong>45<strong>,2032-2043</p><p><span style=“color:ff6600”><strong>open access</strong><br/><strong><a href=“http://dx.doi.org/10.1039/c6py01700b“>生物可降解聚乙烯(氨基泡沫)S with uniform degradation fragments<em>via</em>sequence controlled macromonerms.<a>><strong>><br/>f.埃布森C.GerkeP.哈特维格和洛杉矶哈特曼<br/><strong><em>polym.化学。<em><strong>,2016,<strong>7<strong>,7086-7093<p><p><span style=“color:ff6600”><strong>open access</strong><br/><strong><a href=“http://dx.doi.org/10.1039/c7cc07859e”>分层超分子水凝胶:Self-assembly by peptides and photo-controlled release<em>via</em>host–guest interaction<a>><br/>chih wei chu and bart jan ravoo<br/><strong><em>chem。公社。.<em>.<strong>,2017,<strong>53<strong>,12450-12453</p><p><span style=“color:ff6600”><strong>open access<strong><span><br/><strong><a href=“http://dx.doi.org/10.1039/c8sc00165k”>Controlling destructive quantum interference in tunneling junctions comprising self-assembled monolayers<em>via</em>bond topology and functional groups.<a>><strong><br/>yanxi zhang,Gang Ye索拉巴·索尼,辛凯秋西奥多罗斯L.克里格,哈里TJonkman马可卡洛蒂,Eric Sauter迈克尔·扎尔尼科夫和瑞安·C。chiechi<br/><strong><em>化学。sci.<em>.<strong>,2018,<strong>9<strong>,4414-4423<p><p><span id=“more-1838”><span><p><p><strong><a href=“http://dx.doi.org/10.1039/c6lc00163g”>The negoing 3d printing revolution in microfluidics</a><strong><br/>nirveek bhattacharjee,阿图罗·乌里奥斯,Shawn Kang and Albert Folch<br/><strong><em>lab chip<em><strong>,2016,<strong>16<strong>,1720-1742<p><p><strong><a href=“http://dx.doi.org/10.1039/c5nr07107k”>Nanopatterned Polymer Brushes:conformation,制造和应用丽娜KIsta任鹏谷Stefan Zauscher和Gabriel P.l_pez<br/><strong><em>nanoscale<em><strong>,2016,<strong>8<strong>,680-700</p><p><strong><a href=“http://dx.doi.org/10.1039/c6tb02930b”>Glycolymer Monthols for affinity biosparation of proteins in a continuous flow system:Glycolymolymolymolymolymolymolymolymolymolymolymolymolymolymolymolymolymolymolymolyments for affinity biosparation of石竹,松本彦,Yu Hoshino and Yoshiko Miura<br/><strong><em>j.马特。化学。b-<em><strong>,2017,<strong>5<strong>,1148-1154</p><p><strong><a href=“http://dx.doi.org/10.1039/c8tb00922h”>a toolbox approach for multivalent presentation of glidate–receptor recognition on a suprasemolecular scaffold.<a><strong><br/>svenja ehrmann,Chih Wei ChuShalini KumariKim Silberreis克里斯托夫·巴特彻,Jens DerneddeBart Jan Ravoo和Rainer Haag<br/><strong><em>j.马特。化学。b-<em><strong>,2018,<strong>6<strong>,4216-4222</p><p><strong><a href=“http://dx.doi.org/10.1039/c8nr03285h”>The anti adhesive effect of glycycosclusters on<em>pseudomonas aeruginosa</em>bacterial adhesition to electical cells studied by afm single cell force spectroscopy.<a>><br/>francesca zuttion,卡罗琳·利戈尔,Olivier Vidal迈克·W·莱特,弗朗索瓦莫文,巴斯蒂安·维达尔,让·雅克·瓦塞尔,Yann Chevolotmagali phaner goutorbe and hermann schillers<br/><strong><em>nanoscale<em><strong>,2018,<strong>10<strong>,12771-12778</p><p><strong><a href=“http://dx.doi.org/10.1039/c7cc04380e”>pushing the limits of automated glycan assembly:synthesis of a 50mer polymannoside</a><strong><br/>naresh,f.舒马赫,H.S.哈姆和P.H.见《化学》。公社。.<em>.<strong>,2017,<strong>53<strong>,9085-9088</p><p><a href=“http://dx.doi.org/10.1039/c8nr00238j”><strong>Friction and Work Function Vibrational Behavior for an even and odd number of layers in polycystical mos<sub>2.<strong><a><br/>Francesco Lavini,安娜莉莎卡尔,杨高埃多阿尔比塞蒂,台德丽曹腾飞,郭青丽林有曺carmela aruta and elisa riedo<br/><strong><em>nanoscale<em><strong>,2018,<strong>10<strong>,8304-8312</p><p><strong><a href=“http://dx.doi.org/10.1039/c7cc07666e”>supra molecular assembly of fluorogenic glyco dots from perylendiimide based glycycosclusters for targeted imaging of cancer cells</a><strong><br/>ying liu,丁坤继雷东,尼古拉斯·加拉诺斯,易藏,李佳S_bastien vidal and xiao peng he<br/><strong><em>chem.公社。.<em>.<strong>,2017,<strong>53<strong>,11937-11940<p><div class=“lightsocial_container”><a 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化学通讯 法拉第 //www.xcmww.com/fd/?P=1854 看看伦敦法拉第讨论会上的论文和讨论 <p><img class=“AlignRight size full wp-image-1856”src=“//www.xcmww.com/fd/files/2018/09/fd018208.jpg”alt=“”width=“148”height=“219”/>我们很高兴宣布最新一期的<em>Faraday讨论</em>on<a href=“https://pubs.rsc.org/en/journals/journalissues/fd”!issueid=fd018208&type=current&issnprint=1359-6640“><strong>Designing nanopulation systems for catalysis.<strong><a>现已在线发布。这本书包括在伦敦发表的论文,英国于2018年5月公布了所有讨论的记录,与会者在会议上提出的问题和评论。<p><p>highlights include:<p><p><a href=“http://dx.doi.org/10.1039/c8fd00076j”><strong>supported cluster catalysts synthed to be small,简单,选择性的,和稳定池阿宇芳董洋梁望冯寿晓和布鲁斯C。gates<br/><em>faraday discus.<em>,2018,<strong>208<strong>,9-33</p><p><a href=“http://dx.doi.org/10.1039/c8fd00124c”><strong>Perspectives on the Design of NanoParticle Systems for Catalysis.<strong><a><br/>cynthia m.friend and fang xu<br/><em>faraday discus.<em>,2018,<strong>208<strong>,595-607</p><p><a href=“http://dx.doi.org/10.1039/c8fd00004b”><strong>One pot微波合成of highly stable aupd@pd supported core–shell nandoms.<strong><br/>Alexander G.R.Howe彼得JMiedziak戴维J。摩根Qian HePeter Strasser和Jennifer K.Edwards<br/><em>Faraday Discus.<em>,2018,<strong>208<strong>,409-425</p><p><span style=“color:ff6600”><strong>open access</strong><span><br/><a href=“http://dx.doi.org/10.1039/c8fd00001h”><strong>Continuous synthesis of hollow silver–paddle nandoes for catalystical applications.<strong><a><br/>ke jun wu,高云虎和劳拉Torrene Murciano<br/><em>Faraday Discus.<em>,2018,<strong>208<strong>,427-441</p><p>我们希望您喜欢阅读文章。为什么不加入我们的活动呢?searchtext=faraday&eventtype=3&rsc=1&membernetworkoptions=116&pagetitle=178“>即将到来的faraday讨论</a>s,让自己参与进来!<p><div class=“lightsocial_container”><a class=“lightsocial_a”href=“http://digg.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f09%2f06%2fdesigning nanoparticle systems for catalysis published online%2f&title=designing+nanoparticle+systems+for+catalysis+-+published+online“><img class=“light 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href=“http://www.rsc.org/events/detail/29947/mechanisic processes in organizational m新利手机客户端etallic chemistry faraday discussion”>img class=“Alignright wp-image-1841”src=“//www.xcmww.com/fd/files/2018/08/v18_co-fd-physical-insidences-into-mechanisic_600-300x250.jpg”alt=“mechanisic processes in organizational metallic chemistry”width=“239”height=“199”srcset=“//www.xcmww.com/fd/files/2018/08/v18_co_fd-physical-insidences-into-mechanical_600-300x250.jpg 300W,//www.xcmww.com/fd/files/2018/08/v18_co_fd-physical-insidences-into-mechanical_600.jpg 600w“尺寸=”(最大宽度:239px)100vw,239px“/><a>We are looking to our<em>Faraday discussions<em>meeting on<strong><a href=“http://www.rsc.org/events/detail/29947/Mechanisic processes in Organical metallic chemistry F新利手机客户端araday discussion”>Mechanisic processes in Organical metallic chemistry</a><strong>in York,英国,2019年9月2日至4日。<p>我们将讨论目前对异常元素键形成和激活的理解,机械理解的物理方法和计算方法,再加上对有机和工业转型的机械洞察。<p>The Oral Abstract Deadline is approaching!<strong><a href=“http://www.rsc.org/events/detail/29947/mechanisic processes in organomatic meta新利手机客户端llic chemistry faraday discussion abstract submission”>Submit your abstract by 17 october.<a>>strong>for the opportunity to discus your work with an excellent line-up of speakers including odile eisenstein,Thomas BraunJeremy Harvey艾文磊盖伊·劳埃德·琼斯,Jennifer Love and More.<p><p>.<p><p>to get you in the mood,我们鼓励您阅读最近在一系列皇家化学学会期刊上发表的一些优秀的相关评论和原始研究。新利手机客户端有几个是免费的-享受吧!<p><p><strong><a href=“h t t p://dx.doi.org/10.1039/c7cs00637c”>access to the<em>meta</em>position of arenes through transition metal catalysted c–h bond functionalization:a focus on metals other than paddle.<strong><br/>madalina t.米哈伊乔治里热那夫和罗伯特J。phipps<br/><strong><em>chem.SOC。rev.<em>.<strong>,2018,<strong>47<strong>,149-171<p><p><strong><span style=“color:ff6600”>open access<span><strong><br/><strong><a href=“http://dx.doi.org/10.1039/c7sc04509c”>a lesson for site selective c–h functionalization on 2-pydones:radical,有机金属化合物,directing group and steric controls</a><strong><br/>koji hirano and masahiro miura<br/><strong><em>chem.sci.<em>.<strong>,2018年,<strong>9<strong>,22-32</p><p><span style=“color:ff6600”><strong>open access<strong><span><br/><strong><a href=“http://dx.doi.org/10.1039/c7sc05039a”>metal烷基programmed to generate metal烷基idenes byα-h abstraction:prediction from NMR chemical shift</a>><br/>Christopher P.戈登山本Keishi,基思Satoru Shirase李察A安徒生Odile Eisenstein and Christophe cop_ret<br/><strong><em>chem.sci.<em>.<strong>,2018,<strong>9<strong>,1912-1918</p><p><strong><a href=“http://dx.doi.org/10.1039/c7cp05709a”>Quantitative dft modeling of product concentration in organomatic reactions:cu mediated pentafluorethyization of benzoc acid chlorides a s a case study</a><strong><br/>jes jover<br/><strong><em>phs.化学。化学。物理。.<em>.<strong>,2017,<strong>19<strong>,29344-29353<p><p><a href=“http://dx.doi.org/10.1039/c8dt00449h”><strong><em>n<em><strong><a><a href=“http://dx.doi.org/10.1039/c8dt00449h”><strong>–and<em>s.-donor leaving groups in triazole based ruthena(ii)cycles:potential anticocer activity,选择性激活,和行动模式研究里德尔,Michaela Hejl马提亚斯H.MKlose亚历山大·罗勒,米迦勒A雅库佩Wolfgang Kandigoler和Bernhard K.Keppler<br/><strong><em>Dalton Trans.<em><strong>,2018,<strong>47<strong>,4625-4638</p><p><strong><span style=“color:ff6600”>open access<span><strong><br/><strong><a href=“http://dx.doi.org/10.1039/c7sc05058e”>New activation mechanism for half-sandwich organmetallic anticocer complex.<a><strong><br/>samya banerjee,琼J.索尔德维拉·巴雷达,朱利叶斯A。Wolny克里斯托弗AWootton亚伯拉哈哈巴提玛人,伊索尔达·罗梅罗·坎恩,冯晨盖伊J克拉克森Ivan Prokes宋丽江,彼得湾奥康纳Volker Sch_nemann和Peter J.Sadler<br/><strong><em>化学。sci.<em>.<strong>,2018,<strong>9<strong>,3177-3185</p><p><strong><span style=“color:ff6600”>open access<span><strong><br/><strong><a href=“http://dx.doi.org/10.1039/c8sc01537f”>selective oxymetalation of terminal alynes<em>via</em>6-<em>endo</em>cyclization:mechanisic investigation and application to the efficient synthesis of 4-substituted isocoumarins<a><strong><br/>yujiKitaTetsuji Yata西岛吉弘,Kouji Chiba和Makoto Yasuda<br/><strong><em>Chem.sci.<em>.<strong>,2018年,<strong>9<strong>,6041-6052<<p><strong><a href=“http://dx.doi.org/10.1039/c8qo00282g”>胺选择性形成邻苯二甲酰亚胺,由Pd催化氧化C–H氨基羰基化的醛和CO廖凡牛慧英和雷艾文<br/><strong><em>org.化学。正面。.<em>.<strong>,2018,<strong>5<strong>,1957-1961年</p><p><span id=“more-1834”><span><p><strong><a href=“http://dx.doi.org/10.1039/c8cc0136h”>significant effects of counteronals on the anticocer activity of iridium(iii)composits</a><strong><br/>hairong zhang,李华国甄振天蒙恬舒苗张支珊旭裴伟巩萧峰正贾昭、哲柳公社。.<em>.<strong>,2018年,<strong>54<strong>,4421-4424<p><p><strong><span style=“color:ff6600”>open access<span><strong><br/><strong><a href=“http://dx.doi.org/10.1039/c8sc01025k”>4-取代吡啶的脱氢偶合由锆(ii)synthon:reaction pathways and dead ends</a><strong><br/>lukas.梅尔兹,休伯特·瓦德波尔,Eric Clot和Lutz H.gade<br/><strong><em>化学。sci.<em>.<strong>,2018,<strong>9<strong>,5223-5232<<p><strong><a href=“http://dx.doi.org/10.1039/c7dt02162c”>N-杂环卡宾-吡啶-帕拉达环戊二烯复合物对卤素添加的反应性。不可预测的反应过程Claudio Santo托马斯·斯卡托林,尼古拉·德米特里和卢西亚诺·卡诺维斯2017,<strong>46<strong>,10399-10407</p><p><strong><span style=“color:ff6600”>open access<span><strong><br/><strong><a href=“http://dx.doi.org/10.1039/c7sc00601b”>Quantum Chemical Calculation of Electron电离mass spectrum for General Organic and无机分子</a><strong><br/>vilhj_lmur_sgeirsson,克里斯托夫ABauer和Stefan Grimme<br/><strong><em>Chem.sci.<em>.<strong>,2017,<strong>8<strong>,4879-4895</p><p><strong><span style=“color:ff6600”>open access<span><strong><br/><strong><a href=“http://dx.doi.org/10.1039/c7sc00549k”>an automated method to find reaction mechanisions and solve the dynamics in organomatic catalysis</a><strong><br/>a.VarelaS.A.V.ZZ和E.mart_n ez-n_ez<br/><strong><em>chem.sci.<em>.<strong>,2017,<strong>8<strong>,3843-3851</p><p><strong><a href=“http://dx.doi.org/10.1039/c8cc05233f”>Tuning the Lewis酸度of difluirido gold(iii)complex:the synthesis of[auclf<sub>2(simes)]and[auf<sub>2.<sub>(otef<sub>5.<sub>)(simes).<a><strong><br/>mathias a.埃尔万格尔克拉拉·冯·兰道,西蒙·斯坦豪尔,周云飞,Anja WiesnerHelmut BeckersThomas Braun和Sebastian Riedel<br/><strong><em>Chem.公社。.<em>.<strong>,2018,<strong>54<strong>,9301-9304<p><div class=“lightsocial_container”><a class=“lightsocial_a”href=“http://digg.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f08%2f21%2fmechanical-processes-in-organmetallic-chem新利手机客户端istry-oral-deadline-17-10月%2f&title=mechanical+processes+in+organmetallic+chemistry+-+oral+deadline+17+10月“><img class=“light social\u img”src=“//www.xcmww.com/fd/wp-content/plugins/light-social/digg.png”alt=“digg this”title=“digg this“/><a><a class=“lightsocial_a”href=“http://www.reddit.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f08%2f21%2fmechanical-processes-in-organmetallic-chemistry-oral-deadline-17-10月%2f&title=mechanical+processes+in+organmetallic+chemistry+-+oral+deadline+17+10月“><img class=“light social\u 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buzz(aka)。google reader)“title=”google buzz(aka.google reader)“/>.<a>.<div> //www.xcmww.com/fd/2018/08/21/mechanisic-processes-in-organomatic-chem新利手机客户端istry-oral-deadline-17-10月/feed/ 小系统和复杂系统中的量子效应 //www.xcmww.com/fd/2018/08/07/quantum-effects-in-small-and-complex-systems/ //www.xcmww.com/fd/2018/08/07/quantum effects in small and complex systems/响应 星期二,2018年8月7日10:49:34+0000 希瑟·蒙哥马利,副编辑 征文 会议 化学通讯 法拉第 PCCP //www.xcmww.com/fd/?P=1821 与世界领先的专家进行讨论,并在法拉第讨论卷上发表自己的贡献。 <p><img class=“size medium wp-image-1822 alignright”src=“//www.xcmww.com/fd/files/2018/08/cm-022-17-600px-x-500px-mpu-300x 250.jpg”alt=“”width=“300”height=“250”srcset=“//www.xcmww.com/fd/files/2018/08/cm-022-17-600px-x-500px-mpu-300x 250.jpg 300W,//www.xcmww.com/fd/files/2018/08/cm-022-17-600px-x-500px-mpu-768x640.jpg 768W,//www.xcmww.com/fd/files/2018/08/cm-022-17-600px-x-500px-mpu-1024x854.jpg 1024W,//www.xcmww.com/fd/files/2018/08/cm-022-17-600px-x-500px-mpu.jpg 1250w“尺寸=”(最大宽度:300px)100vw,300px“/><a href=“http://rsc.li/quantum-fd2018”><span style=“font-size:14pt”><strong>quantum effects in small molecular systems</strong><a><br/>10–12 september 2018,爱丁堡英国</p><p><a href=“https://www.eventsforce.net/rsc/frontend/reg/tselectbookingmode.csp?”pageid=332243&eventid=1091&temppersonid=636464“>register by<strong>20 august<strong><a>to secure your place and join the discussion<p><p>with something to appeal to researchers working on both isolated and restricted molecular systems,我们将讨论一些基本的物理化学。新利手机客户端尽管如此,这些影响在大气化学中是明显的,新利手机客户端生物学,物理学,以及天体物理学和天体化学。<p>We look to新利手机客户端 hearing from world leading researchers including:<p><ul><li>sir david clary(university of oxford)<li><li>ad van der avoird(radboud university nijmegen)<li><li>joel bowman(emory university)<li><li>steve bradford(university of sothern california)<li><li>stephen r.Leone(加利福尼亚大学,伯克利和伯克利实验室)<li><li>anne b.McCoy(华盛顿大学).<li><li>Petr Slav_ek(University of Chemistry and Technolo新利手机客户端gy Prague).<li><li>Thierry Stoecklin(Universit_de Bordeaux).<li><li>Anne Zehnacker Retinen(Universit_Paris Sud).<li><ul><p>Don't forget that<strong>every delegate.<strong>has the opportunity to participation,在相关卷中记录评论和讨论<a href=“http://pubs.rsc.org/en/journals/journalissues/fd”!&adv“><em>Faraday讨论</em><p><p><img class=“Alignnone size中等wp-image-1823-Align左侧”src=“http://blog.rsc.org/fd/文件/2018/08/v18_co-fd-Qua量子-影响-in-复杂-系统Event-Banner-600p x-x-x-500p x web-300x 250.jpg”alt铺铺展&&adv“><em>Faraday讨论-<em>><p><p><<p><<<p><img class<img class=“Alignnon中等中等中等中等wp-image-1823-1823 Align左侧”src&www.RSc.rsc.rsc.rsc.org/Effects-in-complex-systems_events-banner-600px-x-500px_web-300x250.JPG 300W,//www.xcmww.com/fd/files/2018/08/v18_co_fd-quantum-effects-in-complex-systems_events-banner-600px-x-500px_web.jpg 600w“size=”(最大宽度:300px)100vw,300px“/><a href=“http://rsc.li/quantum effects-fd2019”><span style=“font-size:14pt”><strong>save the date:quantum effects in complex systems.<strong><a><br/>1–13 september 2019,考文垂,UK</p><p>with the rapid rate of development and wide application domains,法拉第讨论的主要目的是提供当前理论和实验最先进的方法的快照,这些方法旨在询问和合理化量子力学效应在复杂系统中的作用;同时,本次会议将作为一个新的论坛,讨论跨越实验/理论领域的想法。<p><p>Submit an Oral/Paper Abstract by<strong>2018年12月19日</strong>if you wish to be considered for an Oral Presentation and Associated Published Paper(Submition Opening Soon).<p><p>.<p><p>for more information about the unique法拉第讨论的格式请查看我们的<a href=“http://www.rsc.org/journals books databases/about journals/faraday discussions/faq/”>faqs page.<a>><p>><div class=“lightsocial\u container”><a class=“lightsocial\u a”href=“http://digg.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f08%2f07%2fquantum effects in small and complex systems%2f&title=quantum+effects+in+small+and+complex+systems“><img class=“light social\u img”src=“//www.xcmww.com/fd/wp-content/plugins/light-social/digg.png”alt=“digg this”title=“digg”/>=<a class=“light social\u a”href=“http://www.reddit”。COM/提交?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f08%2f07%2fquantum effects in small and 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//www.xcmww.com/fd/2018/07/30/symposium-in-memory-of-ahmed-zewail-overfast-molecular-s新利手机客户端ciences-by-femtosecond-photos-and-electures/ //www.xcmww.com/fd/2018/07/30/symposium in memory of ahmed zewail overfast molecular s新利手机客户端ciences by femtosecond photons and electrones/回应 周一,2018年7月30日13:08:35+0000 希瑟·蒙哥马利,副编辑 会议 新闻 法拉第 //www.xcmww.com/fd/?P=1812 法拉第讨论很高兴在下月的第256届美国化学学会全国会议上赞助本次研讨会。 <p><em>法拉第讨论</em>很高兴赞助即将到来的<a href=“https://plan.core apps.com/acsboston18/event/ae34cf48e6628669bb62a32bd640f09”><strong>Symposium in Memory of Ahmed Zewail:Ultrafast Molecular Sciences by Femtosecond Photons and Electr新利手机客户端ones.<strong><a>which will take place at the ACS Division of Physical Chemistry 256th波士顿全国会议,新利手机客户端MA自2018年8月19日至23日。<p><a href=“http://www.rsc.org/events/detail/29702/Ultrafast photoinduced energy and charge transfer faraday discussion”><img class=“size medium wp-image-1813 AlignRight”src=“//www.xcmww.com/fd/files/2018/07/v18_co_fd-upe_web_banners_300x250-300x250.jpg”alt=“”width=“300”height=“250”/>嗯,为了纪念已故的艾哈迈德·泽维尔,他邀请了44人参加了会议,4人参加了关于女性科学最新进展的会谈,新利手机客户端包括理论和实验。主题包括气体中的反应动力学,液体,在接口处,电荷转移过程,生物学的初级过程,以及超快衍射和成像的电子动力学。这些研究现在是可能的,多亏了中频的发展,死灵飞龙紫外线X射线,以及在飞秒和阿秒时间尺度上具有持续时间的电子脉冲,其中许多是由艾哈迈德·泽维尔首创的。<p>The topic is close related to the faraday discussion in ventura,加利福尼亚州,2019年4月,关于超快光诱导能量和电荷转移法拉第讨论“>超快光诱导能量和电荷转移由Mike Ashfold(布里斯托尔大学)和Steve Bradford(南加州大学)共同主持。<p>Inquiries about the symposium in Boston should be directed to the organisors:Dongping Zhong,俄亥俄州立大学(zhong.28@osu.edu)或Marcos Dantus,密歇根州立大学(dantus@chemistry.msu.edu)<新利手机客户端p><div class=“lightsocial_container”><a class=“lightsocial_a”href=“http://digg.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f07%2f30%2f飞秒光子和电子对艾哈迈德·泽维尔超快分子科学的记忆专题讨论会%2f&title=symposium+in+memory+of+ahmed+z新利手机客户端ewail%3a+超快+分子+科学+by+femtosecond+光子+和+电子“><img class=“lightsocial\u 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我们很高兴与大家分享去年法拉第讨论会上阅读最多的文章。从基础研究到应用研究,这些文章展示了世界知名研究人员正在讨论的主题的广度,有许多可用的开放式访问。我们从2017年下载最多的文章:介绍性讲座:阳光驱动的分水[…] <p><img class=“size medium wp-image-1806-alignright”src=“//www.xcmww.com/fd/files/2018/07/051318偅banner偅faraday-300x91.jpg”alt=“”width=“300”height=“91”srcset=“//www.xcmww.com/fd/files/2018/07/051318偅banner偅faraday-300x91.jpg 300w,//www.xcmww.com/fd/files/2018/07/051318偅banner偅faraday-768x234.jpg 768W,//www.xcmww.com/fd/files/2018/07/051318偅banner偅faraday-1024x312.jpg 1024W,//www.xcmww.com/fd/files/2018/07/051318偅banner偅faraday.jpg 1241W“尺寸=”(最大宽度:300px)100vw,300px“/>我们很高兴与大家分享去年不同范围的法拉第讨论中阅读最多的文章。从基础研究到应用研究,这些文章展示了世界知名研究人员正在讨论的主题的广度,在许多可用的情况下,open access<span style=“color:ff6600”>open access<span><p><p>我们从2017年下载的最多的文章:<p><p><strong><a href=“http://dx.doi.org/10.1039/c6fd00221h”>介绍性讲座:阳光驱动的水分裂和异质半导体系统的二氧化碳减少作为人工光合作用的关键过程</a></STRONG><br/>Takashi Hisatomi and Kazunari Domen<br/><STRONG><em>Faraday Discus.<em><STRONG>,2017,<strong>198<strong>,11-35</p><p><strong><a href=“http://dx.doi.org/10.1039/c6fd00218h”>入门讲座:Recent Research progress on aggregation induced emission</a><strong><br/>Yuancheng Wang,关欣张孟高袁静彩迟战,祖金朝Deqing Zhang and Ben Zhong Tang<br/><strong><em>Faraday discussion.<em><strong>,2017,<strong>196<strong>,9-30</p><p><span style=“color:ff6600”>open access<span><br/><a href=“http://dx.doi.org/10.1039/c7fd00094d”><strong>an integrated biofinery concept for conversion of sugar beat pulp into value-added chemicals and pharmaceutical intermediates</strong><br/>max c_rdenas fern_ndez,Maria Bawn夏洛特·哈姆利·班纳特,佩努马萨克v.诉巴拉特Fabiana Subrizi公司,努拉希金·苏海利,戴维·P·P沃德,莎拉·布丁,保罗A。代尔比海伦C。HailesPeter Hewitson伊格纳托娃,克莱奥·康托拉维迪,戴维J。泄漏,Nilay Shah汤姆D谢泼德,约翰·M·M沃德和加里J。碱液<br/><strong><em>faraday discus.<em><strong>,2017,<strong>202<strong>,415-431<p><p><span style=“color:ff6600”>open access<span><br/><a href=“http://dx.doi.org/10.1039/c7fd00199a”><strong>卤素键合,查耳根键合,PNictogen键合,Tetrel键合:起源,当前状态和讨论2017,<strong>203<strong>,485-507<p><p><span style=“color:ff6600”>open access<span><br/><a href=“http://dx.doi.org/10.1039/c7fd00051k”><strong>structure–property–activity relationships in a pyridine containing azine linked covalent organic framework for photocatalystic hydrogen evolution.<strong><a><br/>frederik haase,Tanmay Banerjee,G_KCen Savasci,克里斯蒂安·奥森菲尔德和贝蒂娜V.lotsch<br/><strong><em>faraday discus.<em><strong>,2017,<strong>201<strong>,247-264<p><p><span style=“font-size:14pt”><span id=“more-1804”><span><p><p><a href=“http://dx.doi.org/10.1039/c6fd00215c”><strong>photocatalystic co<sub>2</sub>reducation using water as an electron supplier by a powder<em>z.-scheme system consisting of metal sulfide and an rgo–tio<sub>2.<sub>composite.<strong><a><br/>tomoaki tak阿山,Ko Sato藤村武弘,Yuki KojimaAkihide Iwase and Akihiko Kudo<br/><strong><em>Faraday discus.<em><strong>,2017,<strong>198<strong>,397-407<p><p><span style=“color:ff6600”>open access<span><br/><a href=“http://dx.doi.org/10.1039/c7fd00057j”><strong>new bio-based monomers:tuneable polylister properties using branched diols from biocalymous.<strong><a><br/>sacha p_rocheau arnaud,吴玲玲,玛丽亚·安吉丽卡·黄昌,杰姆斯W科默福德托马斯J。农民,马克西米利安施密德,张菲郑丽和Mark Mascal<br/><strong><em>Faraday discus.<em><strong>,2017年,<strong>202<strong>,61-77<p><p><span style=“color:ff6600”>open access<span><br/><a href=“http://dx.doi.org/10.1039/c7fd00023e”><strong>active oxygenes formed in aqueous mixtures of secondary organic aerosols and mineral dust affecting cloud chemistry and p新利手机客户端ublic health in the antopocene.<strong><a><br/>haijie tong,帕斯卡尔S。J莱基安德里亚M。ArangioJoanna Socorro克里斯托弗J。Kampf托马斯·伯克梅尔,威廉H布鲁恩,Ulrich P_schl and Manabu Shiraiwa<br/><strong><em>Faraday discus.<em><strong>,2017,<strong>200<strong>,251-270</p><p><span style=“color:ff6600”>open access<span><br/><a href=“http://dx.doi.org/10.1039/c7fd90032e”><strong>clean air in the antopocene.<strong><a><br/>jos lelieveld<br/><strong><em>faraday discussion.<em><strong>,2017,<strong>200<strong>,693-703<p><p><span style=“color:ff6600”>open access<span><br/><a href=“http://dx.doi.org/10.1039/c6fd00185h”><strong><em>in situal</em><strong>tem observation of the Boudouard reaction:multi-layered graphene formation from co on cobalt namicular at atmospheric pressure.<strong><a><br/>Marien Bremmer,伊里尼扎查拉基,安雅O.斯吉斯塔德,维奥莉塔·纳瓦罗,乔斯特W。MFrenken和Patricia J.Kooyman<br/><strong><em>Faraday discus.<em><strong>,2017,<strong>197<strong>,337-351</p><p><a href=“http://dx.doi.org/10.1039/c6fd00184j”><strong>颗粒光催化剂表for z-scheme水拆分:Advantages over Powder Suspension and Photochemical Systems and Future Challenges</strong><a><br/>Qian Wang,Hisatomi先生,Masao Katayama高田建义,汤木明吉石,Akihiko KudoTaro Yamada and Kazunari Domen<br/><strong><em>Faraday discussion.<em><strong>,2017,<strong>197<strong>,491-504<p><p><span style=“color:ff6600”>open access<span><br/><a href=“http://dx.doi.org/10.1039/c7fd00070g”><strong>Organic waste as a sustainable feedum for platform chemicals<strong><a><br/>昏迷,e.马丁内斯·埃尔南德斯,f.阿贝尔恩S.RaikovaJ唐纳利,T.C.ArnotMJ艾伦d.d.洪和C。JChuck<br/><strong><em>Faraday discus.<em><strong>,2017,<strong>202<strong>,175-195</p><p><a href=“http://dx.doi.org/10.1039/c6fd00251j”><strong>Synergical effects of k<sup>+<sup>and mg<sup>2+<sup>ion intercalation on the ecologic and actuation properties of the two-dimension ti<sub>3<sub>c<sub>2<sub>mxene<strong><a><br/>qiang gao,Jeremy ComeMichael NaguibStephen JesseYury Gogotsi and Nina Balke<br/><strong><em>Faraday discus.<em><strong>,2017,<strong>199<strong>,393-403</p><p><a href=“http://dx.doi.org/10.1039/c7fd90017a”><strong>molecular catalysts for artificial synthesis:general discussion.<strong><a><br/>mei wang,Vincent ArteroLeif Hammarstr_m,Jose Martinez乔舒亚·卡尔森,Devens Gust彼得·萨默斯,Charles Machan彼得·布鲁格,克里斯托弗DWindleKageshima Yosuke,理查德·科格德尔,克里斯汀·罗德夫·托洛德,亚历山大·基布尔,多古坎·哈扎尔·阿帕伊丁,藤田裕子,约翰内斯·埃尔梅尔,Seigo Shima伊丽莎白·吉布森,Ferdi Karadas安东尼·哈里曼,井上春树,Akihiko KudoTakayama先生,迈克尔·瓦西里夫斯基,卡西奥拉黄雅吉先生,Hitoshi Ishida费德里科·弗兰科,Sang Ook KangDaniel Nocera我可以吗?Fabio Di Fonzo贤湖公园,李成隼Tohru Setoyama杨秀康,石田浩茂,简仁神Ho Jin Son and Shigeyuki Masaoka<br/><strong><em>Faraday discus.<em><strong>,2017,<strong>198<strong>,353-395</p><p><a href=“http://dx.doi.org/10.1039/c6fd00250a”><strong>Underscreening in concentrated electronologies.<strong><a><br/>alpha A.李,卡拉S佩雷斯·马丁内斯,亚力山大M史密斯和苏珊·珀金2017,<strong>199<strong>,239-259</p><p><a href=“http://dx.doi.org/10.1039/c6fd00258g”><strong>Aggregation-inducted emission:Endinging remarks</strong><a><br/>bin liu and ruoyu zhang<br/><strong><em>Faraday discussion.<em><strong>,2017,<strong>196<strong>,461-472</p><p><a href=“http://dx.doi.org/10.1039/c6fd00183a”><strong><em>in situal</em><strong><strong>Spectroscopy Monitoring of Co<sub>2<sub>reducation at copper oxide elector.<strong><a><br/>liying wang,卡里亚尼·古普塔,约瑟芬湾MGoodall贾瓦德A达尔和凯瑟琳B。holt<br/><strong><em>faraday discus.<em><strong>,2017,<strong>197<strong>,517-532<p><p><span style=“color:ff6600”>open access<span><br/><a href=“http://dx.doi.org/10.1039/c7fd00158d”><strong>low cost ionic liquid–water mixtures for effective extraction of carbonese and lipid from algage.<strong><a><br/>trang q.到,凯琳·普罗克特,布莱克A西蒙斯Suresh SubashChandrabose and Rob Atkin<br/><strong><em>Faraday discus.<em><strong>,2018,<strong>206<strong>,93-112<p><div class=“lightsocial_container”><a class=“lightsocial_a”href=“http://digg.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f07%2f26%2fmost-downloaded-faraday-discussions-articles-from-2017%2f&title=most+downloaded+faraday+discussions+from+2017“><img class=“light social\u img”src=“//www.xcmww.com/fd/wp-content/plugins/light-social/digg.png”alt=“digg this”title=“digg”/>=<a><a class=“light social\u a”href=“http://www.reddit.com/submit?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f07%2f26%2fmost-downloaded-faraday-discussions-articles-from-2017%2f&title=most+downloaded+faraday+discussions+from+2017“><img class=“light social\u img”src=“//www.xcmww.com/fd/wp-content/plugins/light-social/reddit.png”alt=“reddit this”title=“reddit”/>=<a><a class=“light social\u 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法拉第 PCCP //www.xcmww.com/fd/?P=1787 我们已将截止日期延长到8月27日,以便让更多人有机会做出贡献-不要错过! <p><a href=“http://rsc.li/mixtures-fd2019”><img class=“size medium wp-image-1796 alignright”src=“//www.xcmww.com/fd/files/2018/07/v18_co_fd-challenges-in-analysis-of-complex-natural-mixtures_600x500_web-300x250.jpg”alt=“”width=“300”height=“250”srcset=“//www.xcmww.com/fd/files/2018/07/v18_co_fd-challenges-in-analysis-of-complex-natur铝混合物_600x500 _web-300x250.jpg 300W,//www.xcmww.com/fd/files/2018/07/v18_co_fd-challenges-in-analysis-of-complex-natural-mixtures_600x500_web.jpg 600w“尺寸=”(最大宽度:300px)100vw,300px“/></a>很难分析不容易分离成其组成部分的混合物。但观察土壤中的污染物是很重要的,食物或生物代谢产物的成分。<p><p>因此,我们将汇集来自不同专业领域的专家来讨论这个迷人的领域。从色谱仪到分光镜,以及关注特定生物代谢产物或环境混合物的人员,来自世界各地的研究人员将于明年5月在爱丁堡讨论复杂天然混合物分析中的挑战。高分辨率技术,数据挖掘和可视化,和化学计量学。<p><p><p><span style=“font-size:14pt”><strong>so how can you get involved?<strong><span><p>Submit an Oral Abstract by<strong>27 August<strong>for a Chance to Join<br/>–Philippe Schmitt Kopplin(Helmholtz Zentrum M_nchen/Technical University Munich)<br/>–Chris Reddy(Woods Hole Oceanographic Institution)<br/>–Lutgarde Buydens(Radboud University)<br/>–Andr_J.辛普森(多伦多大学)<br/>–dan st_rk(哥本哈根大学)<br/>and many more!<p><p><a href=“http://www.rsc.org/events/detail/29574/challenges in analysis of complex natural mixtures faraday discussion abstract submission”><img class=“Alignnone size full wp-image-1414”src=“//www.xcmww.com/fd/files/2015/05/submit.png”alt=“submit”width=“120”height=“30”/>.<p><div class=“lightsocial”>al_a“href=”http://digg.com/submit?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f07%2f26%2fchallenges in analysis of complex-natural+mixtures“><img class=“light social_img”src=“//www.xcmww.com/fd/wp-content/plugins/light-social/digg.png”alt=“digg this”title=“digg”/>=<a class=“light social_a”href=“http:”//www.reddit.com/submit?url=http%3a%2f%2fwww.xcmww.com%2fd%2f2018%2f07%2f26%2fchallenges in analysis of complex-natural+mixtures“><img class=“light 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