化学科学博客新利手机客户端 网址://www.xcmww.com/sc FRI,2019年2月8日15:38:10+0000 恩努斯 每小时 https://wordpress.org/?V= 4.9 Iperop19化新利手机客户端学科学奖得主 //www.xcmww.com/sc/2019/02/08/chemical-新利手机客户端science-prize-winner-at-iperop19/ //www.xcmww.com/sc/2019/02/08/chemical-新利手机客户端science-prize-winner-at-iperop19/回复 FRI,2019年2月8日15:27:43+0000 Sarah Sharp助理编辑 奖品 会议 未分类 //www.xcmww.com/sc/?P=6568 化学科学,可持续能新利手机客户端源与燃料,能源与环境科学公司很高兴最近能支持钙钛矿,新利手机客户端在京都举行的有机光电(IPerop19)会议,日本,2019年1月28日至29日。代表英国皇家化学学会,新利手机客户端我们要祝贺以下获奖者,他们每人获得了200英镑的图书券。特别提到[…] <div id=“page”>我们的资源/sc!recentarticles&adv“><em><strong>chemical science.<strong><em>,<a>,<strong><em><a href=“http://pubs.rsc.org/en/journals/journalissues/se”!recentarticles&adv“>可持续能源与燃料</a>.<em>,<strong>and<em><strong><a href=“http://pubs.rsc.org/en/journals/journalissues/ee”!recentarticles&adv“>能源与环境科学</a><strong><em>were needly to recently support the<a href=“https://www.nanoge.org/iperop19/home”><新利手机客户端strong>perovskite,有机光伏与光电(iperop19).<strong>>a>Conference that taked place in京都,日本,自28-29<sup>th</sup>2019年1月。代表<strong><em><a href=“http://www.rsc.org/”>Royal Society of Chemistry<a><em>,<strong>我们想祝新利手机客户端贺以下获奖者,他们每人赢得了200英镑的图书代金券。特别提到化学科学的获胜者,新利手机客户端伦敦帝国理工学院James Durrant教授团队的Chieh Ting Lin:<p><strong><em>Chemical Science<em>winner:lin,新利手机客户端Chieh Ting(Imperial College London)<strong><br/>“Probing the enhanced stability against oxygen induced photodegradation by selection of transport layer and defect passivation”<p><strong><em>energy&environmental science<e新利手机客户端m>winner:yamaguchi,Mayu(早稻田大学)<br/>“Perovskite前体溶液Tuned with polymer addition for effective formation of the photovoltaic layer”<p><div id=“attachment_1007”class=“wp caption alignone”>p><a href=“//www.xcmww.com/se/files/2019/01/whatsapp-image-2019-01-29-at-18.32.56.jpeg”>img class=“wp-image-1007 size medium”src=“//www.xcmww.com/se/files/2019/01/whatsapp-image-2019-01-29-at-18.32.56-300x225.jpeg“alt=”width=“300”height=“225”/>.<p><p class=“wp caption text”>james durrant(Sustainable Energy&Fuels Editor in Chief),山口大禹,Juan Bisquert(能源与环境科学与可持续能源与燃料咨询委员会成员)新利手机客户端.<p>><p>><strong>><em>Sustainable Energy&Fuels.<em>Winner Mantulnikovs,Konstantins(epfl)<br/><“Differential response of the photoflishing and photocurrent of polycystal CH3NH3PBI3 and CH3NH3PBBR3 to the exposure to oxygen and nitrogen”<p><div id=“attachment_”class=“wp caption alignone”>a href=“//www.xcmww.com/se/files/2019/01/whatsapp-image-2019-01-29-at-18.32.09.jpeg“><img class=“wp-iMAGE-1006 SIZE MEDIUM“src=”//www.xcmww.com/se/files/2019/01/whatsapp-image-2019-01-29-at-18.32.09-300x225.jpeg“alt=”width=“300”height=“225”/>.<a><div class=“wp caption alignone”><p class=“wp caption text”>juan bisquert(Energy&Environmental Science and Sustainable Energy&Fuels Adviso新利手机客户端ry Board Member),James Durrant(可持续能源与燃料总编辑)康斯坦丁斯曼图尔尼科夫,Hideo Ohkita and Atsushi Wakamiya</p><div><p><p><p>awards presented by<a href=“http://www.rsc.org/journals books databases/about journals/sustainable energy fuels/editional board members/se_durrant“>james durrant</a>,主编<a href=“http://www.rsc.org/journals books databases/about journals/sustainable energy fuels/”><em>sustainable energy&fuels</em>><p>><div>><div>><div>><div class=“lightsocial&u container”><a class=“lightsocial&u a”href=“http://digg.com/submit”?url=http%3a%2f%2fblowww.xcmww.com%2fsc%2f2019%2f2019%2f02%2f08%2f化学科学奖-科学-科学奖-获胜者-at-iperop19%新利手机客户端2f&title=化学+科学+科学+奖+获胜者+at+iperop19“><img class=“Light社交”img”src=“http://blog.rsc.org/sc/wp-content/plugins/轻-社会/digg.png”alt=“digg this”title=“digg本届”/>,/>,&a>160;<a class=“Light社交”a a”href=“http://www.reddit.com/www.reddit.com/su.com/su一个BMIT?url=http%3a%2f%2fwww.xcmww.com%2fsc%2f2019%2f02%2f08%2fchemical-science-prize-winner-at-iperop19%2f&title=chemical+science+prize+winner+at+iperop19“><img class=“light social\u img”src=“//www.xcmww.com/sc/wp-content/plugins/light-social/reddit.png”alt=“reddit this”title=“reddit”/>=<a class=“light social\u 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a”href=“http://twitter.com/home”?status=reading+http%3a%2f%2fwww.xcmww.com%2fsc%2f2019%2f02%2f08%2fchemical-science-prize-winner-at-iperop19%2f“><img class=“light social_img”src=“//www.xcmww.com/sc/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/buzz/post”?url=http%3a%2f%2fwww.xcmww.com%2fsc%2f2019%2f02%2f08%2fchemical-science-prize-winner-at-iperop19%2f“><img class=“light social_img”src=“//www.xcmww.com/sc/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/sc/2019/02/08/chemical-新利手机客户端science-prize-winner-at-iperop19/feed/ Toshiharu Teranishi以副主编的身份加入化学科学新利手机客户端 //www.xcmww.com/sc/2019/01/31/toshiharu-teranishi-joins-chemical-新利手机客户端science-as-an-associate-editor/ //www.xcmww.com/sc/2019/01/31/toshiharu teranishi以副主编的身份加入化学科学新利手机客户端 清华大学,2019年1月31日16:24:20+0000 莎拉惠特布 未分类 //www.xcmww.com/sc/?P=6561 我们很高兴地宣布,Toshiharu Teranishi教授作为我们最新的副主编加入了化学科学。新利手机客户端Teranishi教授是京都大学化学研究所的教授。他在东京大学教授的指导下获得了博士学位。东芝,1994年,花了七年半的时间 <p><a href=“//www.xcmww.com/sc/files/2019/01/toshiharu teranishi.jpg”><img class=“wp-image-6564 AlignRight”src=“//www.xcmww.com/sc/files/2019/01/toshiharu-teranishi.jpg”alt=“”width=“217”height=“272”srcset=“//www.xcmww.com/sc/files/2019/01/toshiharu-teranishi.jpg 480w,//www.xcmww.com/sc/files/2019/01/toshiharu-teranishi-240x300.jpg 240w“尺寸=”(最大宽度:217px)100vw,217px“/>.<a>我们很高兴地宣布Toshiharu Teranishi教授已经加入<em>Chemical Science</em>作为我们最新的副主编。<p>Teranishi教授是京都大学化新利手机客户端学研究所的教授。他在东京大学教授的指导下获得了博士学位。东芝,1994年,在日本科学技术高级研究所做了七年半的助理教授和副教授。新利手机客户端2004,他以正式教授的身份来到筑波大学,并于2011年搬到京都大学。他是纳米科学技术学会副会长,新利手机客户端日本他是日本科学理事会的一名准成员,目前的研究兴趣包括无机新利手机客户端纳米材料的精确结构控制和高性能设备和光能转换的结构特定功能,并欢迎在这些领域提交材料。<p>Toshiharu has selected 5 fantastic<em>Chemical Science他想和你分享的文章。希望你喜欢阅读!<p><p><strong>perspective.<strong><p><strong><a href=“https://pubs.rsc.org/en/content/articlelanding/2017/sc/c7sc00031f!DivAbstract“>等离子体诱导电荷分离:Chemistry and Wide Applications</a>><br/>Tetsu Tatsuma新利手机客户端,Hiroyasu Nishi and Takuya Ishida<br/><em>Chem.SCI.<2017,<strong>8<strong>,3325-3337<br/><strong>doi:<strong>10.1039/c7sc00031f<p><p><strong>edge articles<strong><p><strong><a href=“https://pubs.rsc.org/en/content/articlelanding/2019/sc/c8sc03555e!DivAbstract“>生物灵感设计:散装铁-硫化镍可有效降低溶剂依赖性二氧化碳.<a><strong><br/>Stefan Piontek,凯正普,丹尼尔·西格蒙德,马蒂亚斯·斯米尔考夫斯基,Ilya SinevDavid TetzlaffBeatriz Roldan Cuenya和Ulf Peter Apfel<br/><em>Chem.SCI.<2019,<strong>10<strong>,1075-1081<br/><strong>doi:<strong>10.1039/c8sc03555e<p><p><strong><a href=“https://pubs.rsc.org/en/content/articlelanding/2018/sc/c8sc02348d!DivAbstract“>了解GaN:ZnO固溶体的可见光光光光催化活性:rh2−ycryo3助催化剂和电荷载体寿命在数十秒内的作用</a><strong><br/>Robert Godin,Hisatomi先生,Kazunari Domen和James R.杜兰特<br/><em>chem.SCI.<2018年,<strong>9<strong>,7546-7555<br/><strong>doi:<strong>10.1039/c8sc02348d<p><p><strong><a href=“https://pubs.rsc.org/en/content/articlelanding/2018/sc/c8sc00742j!divabstract“>rh–ni和ru–ni纳米级催化剂对芳基醚C–O键的有效分解,在水中操作</a>><strong>><br/>safak bulut,Svitalana Siankevich先生,安托万·P·Pvan Muyden邓肯T。L.亚力山大乔治·萨沃利迪斯,张家光,瓦西里·哈茨曼尼卡蒂,宁岩和保罗J。Dyson化学SCI.<2018年,<strong>9<strong>,5530-5535<br/><strong>doi:<strong>10.1039/c8sc00742j<p><p><strong><a href=“https://pubs.rsc.org/en/content/articlelanding/2017/sc/c7sc00990a!DivAbstract“>可视化肖特基结中的双向电子转移,由单个CdS纳米粒子和平面金膜组成易敏芳雍杰望应艳江刘涛和王伟<br/><em>chem.SCI.<2017,<strong>8<strong>,5019-5023<br/><strong>doi:<strong>10.1039/c7sc00990a<p><div class=“lightsocial_container”><a class=“lightsocial_a”href=“http://digg.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fsc%2f2019%2f01%2f31%2ftoshiharu teranishi作为助理编辑加入Chemical Sci新利手机客户端ence%2f&title=toshiharu+teranishi+joins+chemical+science+as+an+associate+editor“><img class=“light social\uimg”src=“//www.xcmww.com/sc/wp-content/plugins/light-social/digg.png”alt=“digg this”title=“digg”/>.<a><a 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reader)“/>.<a>.<div> //www.xcmww.com/sc/2019/01/31/toshiharu-teranishi-joins-chemical-新利手机客户端science-as-an-associate-editor/feed/ 信息图表–Chemsci本周精选 //www.xcmww.com/sc/2019/01/30/infographics-chemsci-pick-of-the-week网站/ //www.xcmww.com/sc/2019/01/30/infographics-chemsci-pick-of-the-week/回复 结婚,2019年1月30日10:54:48+0000 莎拉惠特布 未分类 //www.xcmww.com/sc/?P=6547 作为我们周选计划的一部分,我们的两个最新选择现在提供了方便的信息图表!请看下面的内容:用于钯催化的铃木-宫aura耦合和O-丙炔基在生物相关水介质中的裂解反应的空心纳米反应器paolo destito,安娜·索萨·卡斯蒂略,约瑟夫河库塞罗,费尔南多·L·佩兹,米格尔ACorrea Duarte和Jos_l.Mascare_AS 10.1039/C8SC04390F[…] <p>作为我们周选计划的一部分,我们的两个最新选择现在提供了方便的信息图表!在下面检查它们:<p><p class=“capsule_u title fixpadv--m”><strong>hollow nanorreactors for pd catalysted suzuki–miyaura coupling and<em>o</em>-propargyl cleavage reactions in bio-relevant aqueous media</strong><p class=“capsule_u title fixpadv--m”>paolo destito,安娜·索萨·卡斯蒂略,约瑟夫河库塞罗,费尔南多·L·佩兹,米格尔ACorrea Duarte和Jos_l.Mascare_as</p><p><a href=“https://pubs.rsc.org/en/content/articlelanding/2019/sc/c8sc04390f!divabstract“>10.1039/c8sc04390f</a>><p>><p>><p>><a href=“https://pubs.rsc.org/en/content/articlelanding/2019/sc/c8sc04390f!divAbstract“><img class=“AlignCenter wp-image-6548”src=“//www.xcmww.com/sc/files/2019/01/rsc_1_infographic_version-1.jpg”alt=“pd催化的Suzuki–Miyaura耦合和生物相关水介质中的O-Propargyl裂解反应的空心纳米反应器”width=“1427”height=“803”srcset=“//www.xcmww.com/sc/files/2019/01/rsc_1_infographIC U版本-1.JPG 5334W,//www.xcmww.com/sc/files/2019/01/rsc_1_infographic_version-1-300x169.jpg 300w,网址://www.xcmww.com/sc/files/2019/01/rsc_1_infographic_version-1-768x432.jpg 768W,网址://www.xcmww.com/sc/files/2019/01/rsc_1_infographic_version-1-1024x576.jpg 1024w“尺寸=”(最大宽度:1427px)100vw,1427px“/>.<a><p><p><p><p><strong>a molecular picture of surface interactions of organic compounds on avergent indoor surfaces:limonene adsorption on sio<sub>2.<sub><strong><p>yuan fang,Pascale LakeySaleh Riahi安德鲁·麦克唐纳,Mona Shrestha道格拉斯·托比亚斯,Manabu Shiraiwa and Vicki Grassian<p><a href=“https://pubs.rsc.org/en/content/articlelanding/2019/sc/c8sc05560b!divabstract“>10.1039/c8sc05560b</a><p><a href=“https://pubs.rsc.org/en/content/articlelanding/2019/sc/c8sc05560b!divAbstract“><br/><img class=“AlignCenter wp-image-6550”src=“//www.xcmww.com/sc/files/2019/01/rsc_2_2 infographic.jpg”alt=“a molecular picture of surface interactions of organic compounds on comment indoor surfaces:limonene adsorption on sio2”width=“1411”height=“794”srcset=“//www.xcmww.com/sc/files/2019/01/rsc_infographic.jpg 8000 W,//www.xcmww.com/sc/files/2019/01/rsc_2_infographic-300x169.jpg 300W,网址://www.xcmww.com/sc/files/2019/01/rsc_2_infographic-768x432.jpg 768W,网址://www.xcmww.com/sc/files/2019/01/rsc_2_infographic-1024x576.jpg 1024w“尺寸=”(最大宽度:1411px)100vw,1411px“/><a><p><div class=“lightsocial_container”><a class=“lightsocial_a”href=“http://digg.com/submit”?url=http%3a%2f%2fblowww.xcmww.com%2fsc%2f2019%2f01%2f30%2ffgraph图形chemsci pick of 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social”img“src=“//www.xcmww.com/sc/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/sc/2019/01/30/infographics-chemsci-pick-of-the-week/feed/ 易陶龙副主编加入化学科学新利手机客户端 //www.xcmww.com/sc/2019/01/22/yi-tao-long-joins-chemical-新利手机客户端science-as-an-associate-editor/ //www.xcmww.com/sc/2019/01/22/yi tao long以副主编身份加入化学科学新利手机客户端 星期二,2019年1月22日08:53:34+0000 威廉·金 编委会新闻 //www.xcmww.com/sc/?P=6535 我们很高兴地宣布,易陶龙教授作为副主编加入化学科学。新利手机客户端易涛是中国南京大学分析化学教授。新利手机客户端他获得了学士学位。198新利手机客户端9年在山东大学化学系获博士学位。1998年在南京大学陈宏远教授的指导下。在[…]之后 <p><a href=“//www.xcmww.com/sc/files/2019/01/yitao long.jpg”><img class=“AlignRight wp-image-6542 size medium”src=“//www.xcmww.com/sc/files/2019/01/yitao-long-218x300.jpg”alt=“”width=“218”height=“300”srcsset=“//www.xcmww.com/sc/files/2019/01/yitao-long-218x300.jpg 218W,//www.xcmww.com/sc/files/2019/01/yitao-long-768x1059.jpg 768W,//www.xcmww.com/sc/files/2019/01/yitao-long-743x1024.jpg 743w“尺寸=”(最大宽度:218px)100vw,218px“/>.<a><p><p>We are pleased to announced that<a href=“http://chem.ecust.edu.cn/_t225/2015/0110/c6655a0568/page.htm”>Yi Tao long教授<a>has joined<em>chemical science.<em>as a新利手机客户端n associate editor.<p><p>Yi Tao is a professor of analytical chemistry at ningj新利手机客户端ing university in china.他获得了学士学位。198新利手机客户端9年在山东大学化学系获博士学位。1998年在南京大学陈宏远教授的指导下。在海德堡大学做了两年的博士后研究之后,易涛在加拿大萨斯喀彻温大学和阿尔伯塔大学工作了五年多。在加州大学伯克利分校学习了一年之后,2007年,他在华东理工大学开始了自己的独立职业生涯。易涛的研究兴趣集中在开发新的电化学测量方法,以揭示单一实体的特性和动力学。新利手机客户端这涉及到纳米孔单分子电分析,BioInterface光谱电化学和集成生物传感器。<新利手机客户端p>Yi Tao很期待收到尖端的提交材料,这些材料将引领分析科学和电化学的前沿。<p>Below is a selection of articles published in<em>Chemical Science<em>which Yi Tao would like 新利手机客户端to highlight–all free to read!我们希望您喜欢它们。<p><p><p><a href=“https://pubs.rsc.org/en/content/articlelanding/2019/sc/c8sc03927e!DivAbstract“><strong>a锂离子活性气溶素纳米孔for effectively trapping long single stranding dna.<strong><a><br/>zheng li hu,孟银丽刘少创,易伦英和易陶龙<br/><em>chem.SCI </EM>2019,<strong>10<strong>,354-358<br/><strong>doi:<strong>10.1039/c8sc03927e,Edge文章</p><p><a href=“https://pubs.rsc.org/en/content/articlelanding/2017/sc/c6sc04483b!DivAbstract“><strong>单银纳米粒子在电极表面的冲击和氧化:one shot<em>versus</em>multiple events</strong><br/>jon ustarroz,Minkyung KangErin Bullions和Patrick R.unwin<br/><em>chem.SCI.<2017,<strong>8<strong>,1841-1853<br/><strong>doi:<strong>10.1039/c6sc04483b,Edge文章</p><p><a href=“https://pubs.rsc.org/en/content/articlelanding/2018/sc/c8sc01035h!DivAbstract“><strong>电化学成像的细胞和组织</strong><a><br/>tzu en lin,斯特凡尼亚·拉皮诺,休伯特HGirault和Andreas Lesch<br/><em>Chem.SCI.<2018年,<strong>9<strong>,4546-4554<br/><strong>doi:<strong>10.1039/c8sc01035h,miniReview<p><a href=“https://pubs.rsc.org/en/content/articlelanding/2017/sc/c7sc00415j!DivAbstract“><strong>使用DNA适配体功能化金纳米粒子对蛋白质的选择性单分子纳米孔传感亚历山大伊万诺夫和乔舒亚B。edel<br/><em>chem.SCI.<2017,<strong>8<strong>,3905-3912<br/><strong>doi:<strong>10.1039/c7sc00415j,Edge文章</p><p><a href=“https://pubs.rsc.org/en/content/articlelanding/2018/sc/c8sc03209b!DivAbstract“><strong>Enhanced Annhilation Electrochemichlishing by Nanofluidic Restriction.<strong><a><br/>Hanan al-Kutubi,Silvia Voci莉莎·拉斯维,Neso Sojic和Klaus Mathwig<br/><em>Chem.SCI.<2018年,<strong>9<strong>,8946-8950<br/><strong>doi:<strong>10.1039/c8sc03209b,Edge文章</p><div class=“lightsocial_container”><a class=“lightsocial_a”href=“http://digg.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fsc%2f2019%2f01%2f22%2fyi tao long以助理编辑的身份加入化学科学%2f&titl新利手机客户端e=yi tao+long+joins+chemical+science+as+an+associate+editor“><img class=“light social\u img”src=“//www.xcmww.com/sc/wp-content/plugins/light-social/digg.png”alt=“digg this”title=“digg”/>=<a>>“href=”http://www.reddit.com/submit?url=http%3a%2f%2fwww.xcmww.com%2fsc%2f2019%2f01%2f22%2fyi tao long以助理编辑身份加入化学科学%2f&title=yi tao+long+joins+chemical+science+as+an+associate+editor“><img class=“light social\u 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我们很高兴介绍保罗·梅尔奇奥雷教授为化学科学副主编,新利手机客户端处理有机化学领域的提交材料。新利手机客户端保罗目前在两个机构之间分配时间,意大利技术研究所(IIT)在热那亚作为终身高级科学家,以及位于塔拉戈纳的加泰罗尼亚化学研究所(ICIQ),作为教授和高级组长。保罗的研究是 <p>我们很高兴介绍<strong><a href=“http://www.iciq.org/research/research ou group/prof paolo melchiorre/”>paolo melchiorre教授</a><strong>as<em>chemical science</em>associate editor,新利手机客户端处理有机化学领域的提交。<p>Paolo目前在两个机构之间分配他的时间,新利手机客户端意大利技术研究所在热那亚作为终身高级科学家,以及位于塔拉戈纳的加泰罗尼亚化学研究所,作为教授和高级组长。保罗的研究集中在不对称组织的发展上<a href=“//www.xcmww.com/sc/files/2019/01/paolo-melchiorre-1.jpg”><img class=“Alignright wp-image-6526”src=“//www.xcmww.com/sc/files/2019/01/paolo-melchiorre-1-300x295.jpg”alt=“”width=“200”height=“196”srcset=“//www.xcmww.com/sc/files/2019/01/paolo-melchiorre-1-300x295.JPG 300W,//www.xcmww.com/sc/files/2019/01/paolo-melchiorre-1-768x754.jpg 768W,//www.xcmww.com/sc/files/2019/01/paolo-melchiorre-1-1024x1006.jpg 1024w“尺寸=”(最大宽度:200px)100vw,200px“/></a>nocatalystic and光化学processes that can be used as tools to solve problems in organic synthesis.他的目标是利用光有机催化发展环境友好的反应过程,为常见的合成问题提供创新的解决方案。<p>Paolo现在加入<em>Chemical Science,作为助理编辑,并期待在有机化学领域处理提交材料,新利手机客户端新利手机客户端光化学,新利手机客户端不对称催化和有机催化。<p>below is a selection of articles published in<em>chemical science</em>that paolo would like t新利手机客户端o highlight as being specifically impactful:<p><p><a href=“https://pubs.rsc.org/en/content/articlelanding/2015/sc/c5sc02185e!DivAbstract“><strong>Characterizing chain processes in visible light photoredox catalysis.<strong><a><br/>megan a.Cismesia和Tehshik P.Yoon化学SCI </EM>2015,<strong>6<strong>,5426-5434<br/><strong>doi<strong>:10.1039/c5sc02185e,Edge文章</p><p><a href=“https://pubs.rsc.org/en/content/articlelanding/2012/sc/c2sc00907b!DivAbstract“><strong>协同催化:一种用于新反应开发的强大合成策略</strong><a><br/>Anna E.Allena和David W.C.麦克米伦SCI </EM>2012,<strong>3<strong>,633-658<br/><strong>doi<strong>:10.1039/c2sc00907b,透视图DivAbstract“><strong>镍催化的脂肪族酰胺衍生物的氨基转移</strong><a><br/>Jacob E.皮屑艾玛LBakera和Neil K.Garg<br/><em>化学SCI </EM>2017,<strong>8<strong>,6433-6438<br/><strong>doi<strong>:10.1039/c7sc01980g,Edge文章</p><p><a href=“https://pubs.rsc.org/en/content/articlelanding/2018/sc/c7sc04611a!divabstract“><strong>site selective bromination of sp<sup>3<sup>c-h bonds<strong><a><br/>shyam sathiamoorthi,希伯达斯·班纳吉,J杜波依斯诺亚·Z。伯恩斯和理查德。zare<br/><em>chem.SCI </EM>2018年,<strong>9<strong>,100-104<br/><strong>doi<strong>:10.1039/c7sc04611a,Edge文章</p><p><a href=“https://pubs.rsc.org/en/content/articlelanding/2017/sc/c6sc04157d!DivAbstract“><strong>利用非共价相互作用对催化反应中的区域选择性和位点选择性施加控制</strong><a><br/>Holly J.戴维斯和罗伯特J。phipps<br/><em>chem.SCI </EM>2017,<strong>8<strong>,864-877<br/><strong>doi<strong>:10.1039/c6sc04157d,Edge文章</p><div class=“lightsocial_container”><a class=“lightsocial_a”href=“http://digg.com/submit”?url=http%3a%2f%2fblowww.xcmww.com%2fsc%2f2019%2f2019%2f01%2f14%2f6521%2f&title=教授+保罗+梅尔奇奥雷+加入+化学+科学+AS+an+助理+编辑“><img新利手机客户端 class=“Light社交”img”src=“http://blog.rsc.org/sc/wp-content/plugins/轻-社会/digg.png”alt=“digg 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FRI,2019年1月11日13:22:19+0000 卡里棉 热门文章 //www.xcmww.com/sc/?P=6492 我们很高兴在过去的一个月里提供一系列热门文章。查看2018年以来我们所有的热门裁判推荐文章,请在这里找到收藏品。一如既往,化学科学文章是免费新利手机客户端的。无反应和MMP独立荧光探针用于长期线粒体的可视化和跟踪,广乐牛学成[…] <p>我们很高兴在过去的一个月里提供一系列热门文章。查看2018年以来我们所有的热门裁判推荐文章,请查找集合<a href=“https://pubs.rsc.org/en/journals/articlecollectionlanding?”sercode=sc&themeid=af929dfa-0882-413a-9013-3057A68eaf6“>这里</a><p>as always,<em>化学科学</em>新利手机客户端文章可以免费访问。<p><p><span style=“text-decoration:underline”><strong><a href=“https://pubs.rsc.org/en/content/articlelanding/2018/sc/c8sc05119d!DivAbstract“>长期线粒体可视化和跟踪的无反应和MMP独立荧光探针广乐牛薛晨丽李芳国华苗张杨睿,云聪晨余晓强和唐本忠SCI,2019,高级文章</p><p><strong>doi<strong>:10.1039/c8sc05119d,Edge Article</p><p><a href="//www.xcmww.com/sc/files/2019/01/c8sc05119d-ga.gif"><img class="size-full wp-image-6493 aligncenter" src="//www.xcmww.com/sc/files/2019/01/c8sc05119d-ga.gif" alt="" width="243" height="189" /></a></p><p style="text-align: center">______________________________________________________</p><p><span 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很高兴介绍安德烈·尤丁教授为化学科学副主编。新利手机客户端处理有机化学领域的提交材料。新利手机客户端安德烈是多伦多大学的化学教授,新利手机客户端他的团队专门从事化学合成,专注于制备新的生物活性分子。安德烈和他的团队开创了[…] <p><a href=“//www.xcmww.com/sc/files/2018/12/anderi yudin.png”><img class=“AlignRight wp-image-6471”src=“//www.xcmww.com/sc/files/2018/12/anderi-yudin-300x265.png”alt=“”width=“250”height=“221”srcset=“//www.xcmww.com/sc/files/2018/12/anderi-yudin-300x265.png 300w,//www.xcmww.com/sc/files/2018/12/anderi-yudin-768x677.png 768w,//www.xcmww.com/sc/files/2018/12/anderi-yudin-1024x903.png 1024w“尺寸=”(最大宽度:250px)100vw,250px“/></a>我们很高兴介绍<strong><a href=“http://www.chem.utoronto.ca/wp/yudinlab/”>Andrei Yudin教授</a><strong>as<em>chemical science</em>associate editor,新利手机客户端处理有机化学领域的提交材料。<p>Andrei是多伦多大学的化学教授,新利手机客户端他的团队专门从事化学合成,专注于制备新的生物活性分子。安德烈和他的小组开创了两性试剂的制备工作,开发结构上不同的中间产物,这些中间产物在研究前被认为是不可能制备的。该小组的重点是准备一个难以制备的氨吡啶醛和α-boryl醛的图书馆,这些物质可用于制备医学相关的肽计量学。<p>Andrei is the current editor in chief of the Royal Society of Chemistry Journal,新利手机客户端<em>有机和生物分子化学新利手机客户端运行一个博客系列,定期更新他的团队的进展,找到于<strong><a href=“https://amphoteros.com/”>https://amphoteros.com/<a><strong><p>Andrei has now joined the team at<em>chemical science<em>and新利手机客户端 looks forward to receiving submissions in the areas of organic synthesis,过渡金属催化,肽制备和大环化。<p><p>below is a selection of articles published in<em>chemical science.<em>that anderi would like 新利手机客户端to highlight:<p><p><strong><a href=“https://pubs.rsc.org/en/content/articlelanding/2019/sc/c8sc04868a!divabstract“>亲电环氧化过程中的氧转移由<sup>17<sup>o nmr:differenting between oxidants and role of spector metal oxo</a><strong><br/>Christian Ehinger探测,克里斯托弗·P·PGordon和Christophe Coperet<br/><em>Chem.SCI.<2019,高级文章<br/>doi:10.1039/c8sc04868a,Edge文章<<p><strong><a href=“https://pubs.rsc.org/en/content/articlelanding/2019/sc/c8sc04061c!divabstract“>通过n-四元数化策略的嘧啶嵌入中等大小氮杂环的发散合成途径</a><strong><br/>yoona choi,Heejun Kim and Seung Bum Park<br/><em>Chem.SCI.<2019,高级文章<br/>doi:10.1039/c8sc04061c,Edge文章<<p>We also highlight a few of Andrei's contributions to<em>Chemical Science<em新利手机客户端>from the last years:<p><p><strong><a href=“https://pubs.rsc.org/en/content/articlelanding/2017/sc/c7sc00831g!DivAbstract“>3-氰基硼酸酯是多取代噻吩合成中的多用途构建块谢里夫JKaldas和Andrei K.Yudin<br/><em>Chem.SCI.<2017,<strong>8<strong>,4431-4436<br/>doi:10.1039/c7sc00831g,Edge文章</p><p><strong><a href=“https://pubs.rsc.org/en/content/articlelanding/2016/sc/c6sc01687a!DivAbstract“>源自含氮丙啶的氨基酸的环四肽的反应性和构象控制.<a><strong><br/>Benjamin K.WChung克里斯托弗J。White康诺CG.史高丽和安德烈K.Yudin<br/><em>Chem.SCI.<2016,<strong>7<strong>,6662-6668<br/>doi:10.1039/c6sc01687a,Edge文章</p><div class=“lightsocial_container”><a class=“lightsocial_a”href=“http://digg.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fsc%2f2018%2f12%2f20%2fmeetandreiyudinchemicalscienc新利手机客户端eassociateditor%2f&title=anderi+yudin+joins+chemical+science+as+an+associate+editor“><img class=“light social\u img”src=“//www.xcmww.com/sc/wp-content/plugins/light-social/digg.png”alt=“digg 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class=“lightsocial_a”href=“http://www.technorati.com/faves”?add=http%3a%2f%2fwww.xcmww.com%2fsc%2f2018%2f12%2f20%2fmeetandreiyudinchemicalscienceassociateditor%2f“><img class=“light social”img“src=”//www.xcmww.com/sc/wp-content/plugins/light-social/technorati.png“alt=”bookmark this on technorati“title=”bookmark this on technorati“/>=<a class=“light social_a”href=“http://twitter.com/home”?status=reading+http%3a%2f%2fwww.xcmww.com%2fsc%2f2018%2f12%2f20%2fmeetandreiyudinChemicalScienceAssociatedEditor%2f“><img class=“light social”img“src=”//www.xcmww.com/sc/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/buzz/post?url=http%3a%2f%2fwww.xcmww.com%2fsc%2f2018%2f12%2f20%2fmeetandreiyudinchemicalscienceassociateditor%2f“><img class=“light social_img”src=“//www.xcmww.com/sc/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/sc/2018/12/20/meetandreyudinchemicals新利手机客户端cienceassociatededitor/feed/ 安德鲁·库珀——我们的化学科学新主编新利手机客户端 //www.xcmww.com/sc/2018/12/18/andrew-cooper-new-editor-in-chief-chemical-新利手机客户端science/ //www.xcmww.com/sc/2018/12/18/andrew cooper化学科学总编辑/回复新利手机客户端 星期二,2018年12月18日14:48:28+0000 威廉·金 编委会新闻 //www.xcmww.com/sc/?P=6457 我们很高兴地宣布安德鲁·库珀教授为化学科学的新主编。新利手机客户端安德鲁·库珀是化学教授,新利手机客户端利物浦大学材料发现中心主任和材料创新工厂主任。他是英国皇家学会会员,曾多次获奖。 <p><a href=“//www.xcmww.com/sc/files/2018/12/new sc eic.jpg”><img class=“Alignnone wp-image-6458 size full”src=“//www.xcmww.com/sc/files/2018/12/new-sc-eic.jpg”alt=“”width=“1200”height=“628”srcset=“//www.xcmww.com/sc/files/2018/12/new-sc-eic.jpg 1200瓦,//www.xcmww.com/sc/files/2018/12/new-sc-eic-300x157.jpg 300w,网址://www.xcmww.com/sc/files/2018/12/new-sc-eic-768x402.jpg 768W,//www.xcmww.com/sc/files/2018/12/new-sc-eic-1024x536.jpg 1024w“尺寸=”(最大宽度:1200像素)100vw,1200px“/></a><p><p>我们很高兴宣布<a href=“https://www.liverpool.ac.uk/chemistry/staff/andrew c新利手机客户端ooper/”><strong>教授andrew cooper</strong><a>as the new editor in chief of<em>chemical science</em><p>andrew cooper新利手机客户端 is professor of chemistry,利物浦大学材料发现中心主任和材料创新工厂主任。他是英国皇家学会的会员,因其研究而获得了多项奖项和奖项。<p>库珀教授的研究兴趣在于高分子材料,超临界流体,微孔材料,储氢,金属纳米粒子,有机金属,乳胶模板材料,以及高通量材料方法。<p><p>as we thank<strong><a href=“//www.xcmww.com/sc/2014/12/18/daniel nocera new chemical science editor in chief/”>Daniel n新利手机客户端ocera教授</a>>strong>for his valuable contributions to the journal during his term as editor in chief of<em>chemical science.<em>over the past four years,我们热烈欢迎库珀教授带领该杂志继续取得成功。<p>作为英国皇家化学学会的旗舰期刊,新利手机客户端<em>《化学科学》发表了新利手机客户端来自各个化学科学领域的具有特殊意义的发现。<em>化学科学是免费的,新利手机客户端并且可以免费在中发布-目前免除所有的发布费用。<p>库珀教授加入我们邀请您到<strong><a href=“https://mc.manesccriptcentral.com/chemsci”>Submit.<a>>strong>Your most exception research to<em>Chemical Science.<em>>Today!<p><div class=“lightsocial_container”><a 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class=“lightsocial_a”href=“http://www.linkedin.com/sharearticle”?mini=true&url=http%3a%2f%2fwww.xcmww.com%2fsc%2f2018%2f12%2f18%2fandrew cooper化学科学新主编%2f&title=andrew+cooper+%e2%80%93+our+new+editor in chief+of+chemical+science&summary=&source=“><img class=“light social”img“src=”//www.xcmww.com/sc/wp-content/plugins/light-social/linkedin.png“alt=”share on linkedin“title=”share on linkedin“/>.<a><a class=“lightsocial_a”href=“http://www.technorati.com/faves”?add=http%3a%2f%2fwww.xcmww.com%2fsc%2f2018%2f12%2f18%2fandrew cooper new editor in chief chemical science%2f“><img class=“light social”img“src=“//www.xcmww.com/sc/wp-content/plugins/light-social/technorati.png”alt=“bookmark this on technorati”title=“bookmark this on technorati”/>=<a class=“light social_a”href=“http://twitter.com/ho我?status=reading+http%3a%2f%2fwww.xcmww.com%2fsc%2f2018%2f12%2f18%2fandrew cooper new editor in chief chemical science%2f“><img class=“light social\u img”src=“//www.xcmww.com/sc/wp-content/plugins/light-social/twitter.png”alt=“post on twitter”title=“post on twitter”/>=<a class=“light social\u a”href=“http://www.google.com/buzz/post”?url=http%3a%2f%2fwww.xcmww.com%2fsc%2fsc%2f2018%2f12%2f18%2fAndrew Cooper化学科学新主编%2f“><img class=“light social”src=“//www.xcmww.com/sc/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/sc/2018/12/18/andrew-cooper-new-editor-in-chief-chemical-新利手机客户端science/feed/ 碳涂层有助于减少镍表面的二氧化碳 //www.xcmww.com/sc/2018/12/18/carbon-coating-promosts-co2-reducation-on-nikel-surfaces.//www.xcmww.com/sc/2018/12/18/carbon-coating-promosts-co/ //www.xcmww.com/sc/2018/12/18/carbon-coating-promotors-co2-reduction-on-nikel-surfaces/回复 星期二,2018年12月18日07:55:33+0000 刘天宇 热门文章 碳涂层 二氧化碳还原 镍纳米粒子 //www.xcmww.com/sc/?P=6449 将二氧化碳转化为诸如一氧化碳或碳氢化合物等燃料是减少温室气体净排放和缓解气候变化的一个有前途的策略。二氧化碳还原反应,然而,是一个耗资巨大的过程。因此,二氧化碳还原催化剂是提高二氧化碳转化效率和降低总能源需求的必要手段。研究人员正在开发[…] <p>将CO<sub>2<sub>还原为诸如CO或碳氢化合物等燃料是减少温室气体净排放和缓解气候变化的一个有希望的策略。CO<Sub>2<Sub>还原反应,然而,是一个耗资巨大的过程。因此,CO<Sub>2<Sub>Reduction Catalysts are necessary to enhance the CO<Sub>2<Sub>Conversion Efficiency and Minimize the Overall Energy Demand.<P><P>Researchers are developing high-performance but private CO<Sub>2<Sub>Reduction Catalysts.贵金属,如金,Ag和Pd表现出较高的Co<Sub>2</Sub>-to Co转换效率,但其稀缺性制约了其大规模的实用性。金属铁,Co和Ni在减少Co<Sub>2中起作用,因此,已被确定为贵金属催化剂的替代品。<p><p>Recently in<em>Chem.SCI.<由北京化工大学的孙振宇和韩国先进科学技术研究所(KAIST)的郑友成领导的一组科学家将镍金属的钴还原活性推到了一个新的高度。新利手机客户端研究人员通过在氩中热解镍基金属有机骨架(MOF),合成了碳支撑的镍纳米晶体。所得的镍纳米粒子的平均直径约为30纳米,并嵌入到n掺杂的碳支架中(图1a)。每个纳米颗粒都均匀地涂上一层薄薄的非晶碳(图1b).<p><div id=“attachment_6450”style=“width:629px”class=“wp caption aligncenter”><a href=“//www.xcmww.com/sc/files/2018/12/e_1.jpg”><img class=“wp-image-6450”src=“//www.xcmww.com/sc/files/2018/12/e_1.jpg”alt=“”width=“619”height=“359”srcsset=“//www.xcmww.com/sc/files/2018/12/e_1.jpg 1217w,//www.xcmww.com/sc/files/2018/12/e_1-300x174.jpg 300w,网址://www.xcmww.com/sc/files/2018/12/e_1-768x445.jpg 768w,//www.xcmww.com/sc/files/2018/12/e_1-1024x593.jpg 1024w“尺寸=”(最大宽度:619px)100vw,619px“/><a><p class=“wp caption text”><em><strong>Figure 1.<strong>(a)The elemental mapping of the carbon supported ni nandoms.绿点和蓝色区域是镍纳米颗粒和碳基质,分别。(b)显示镍纳米颗粒表面薄碳涂层的扫描透射电子显微镜图像。(c)不同应用电位下的二氧化碳对一氧化碳转换效率。ni-nc_atpa@c和ni-nc_tpa@c是碳支撑的ni纳米颗粒,来源于具有2-氨基对苯二甲酸和对苯二甲酸有机连接体的mofs,分别。nc_atpa@c是源自atpa的无镍碳粉末。<em><p><div><p>the co<sub>2<sub>-to co conversion efficiency of these ni-c nanocomposites were the highest of all the reported carbon supported ni nandoms.最好的镍催化剂在0.59V的过电位下达到了约94%的最大效率。尽管先前报道过镍碳催化剂的效率通常低于25%。转化效率的显著提高与薄碳涂层有关。该涂层可防止镍纳米颗粒与水性电解质直接接触,从而将氢的析出反应降到最低,一种降低转化效率的副反应。<p><p>这项工作强调了表面碳层在促进Co<sub>2中的辅助作用-镍纳米颗粒的还原活性。碳涂层战略可以扩展到其他低成本过渡金属,这可能会导致各种具有成本效益的CO<sub>2</sub>-还原催化剂。<p><p><p><strong><u>to find out more please read:<u><strong><p><strong><a href=“https://pubs.rsc.org/en/content/articlelanding/2018/sc/c8sc03732a!divabstract“>碳支撑镍纳米颗粒,用于高效CO<sub>2<sub>electronicreduction<a><strong><p>mingwen jia,崔昌贤,Tai Sing WuChen Ma彭康衡聪涛Qun Fan宋红石振柳Yun Liang Soo杨成中,邱介山和孙振宇sci.<em>.<strong>,2018年,9,8775-8780<p><p><p><p><strong><u>ab<a href=“//www.xcmww.com/sc/files/2018/12/tianyu_2018.jpg”><img class=“AlignLeft wp-image-6451”src=“//www.xcmww.com/sc/files/2018/12/tianyu_2018-223x300.jpg”alt=“”width=“108”height=“145”srcset=“//www.xcmww.com/sc/files/2018/12/tianyu_2018-223x300.jpg 223w,//www.xcmww.com/sc/files/2018/12/tianyu_2018.jpg 695w“尺寸=”(最大宽度:108px)100vw,108px“/>.<a>out the blogger:<u>.<strong><p>Tianyu Liu obtained his ph.d.(2017)加州大学新利手机客户端化学专业,美国的圣克鲁斯。他热衷于科学传播,向公众和具有不同研究专长的科学家介绍尖端研究。他是化学的博客作家。common.<em>和<em>chem.SCI </EM>有关他的更多信息,请访问http://liutianyuresearch.weebly.com/“>http://liutianyuresearch.weebly.com/<a><p><div class=“lightsocial\u container”><a class=“lightsocial\u a”href=“http://digg.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fsc%2f2018%2f12%2f18%2fcarbon-coating-promosters-co2-reducation-on-nikel-surfaces%2f&title=carbon+coating+promosters+co2+reducation+on+nikel+surfaces“><img class=“light social”img“src=”//www.xcmww.com/sc/wp-content/plugins/light-social/digg.png“alt=”digg this“title=”digg“/>=<a><a class=”lighthref=“http://www.reddit.com/submit”提交?url=http%3a%2f%2fwww.xcmww.com%2fsc%2f2018%2f12%2f18%2fcarbon-coating-promosts-co2-reducation-on-nikel-surfaces%2f&title=carbon+coating+promosts+co2+reducation+on+nikel+surfaces“><img class=“light social”img“src=”//www.xcmww.com/sc/wp-content/plugins/light-social/reddit.png“alt=”reddit this“title=”reddit 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