纳米级和纳米级进展博客 网址://www.xcmww.com/nr 清华大学,2019年1月31日13:22:43+0000 恩努斯 每小时 https://wordpress.org/?V= 4.9 2019年春季会议——用于能量转换的激发材料和量子点 //www.xcmww.com/nr/2019/01/31/mrs-spring-meeting-2019-excittenic-materials-quantum-dots-for-energy-conversion/ //www.xcmww.com/nr/2019/01/31/mrs-spring-meeting-2019-excitonic-materials-quantum-dots-for-energy-conversion/#respond 清华大学,2019年1月31日13:20:34+0000 汉娜克尔开发编辑 会议 //www.xcmww.com/nr/?P=5288 研讨会ES19——共轭有机分子和量子受限半导体纳米晶体中能量转换的激发材料和量子点-多激发过程可能允许光子中的能量按需要定向。分子框架或材料纳米结构的设计将允许广泛的光学,待设计的电子和机械性能[…] <p style=“text-align:center”><a href=“https://www.mrs.org/spring-2019/call-for-papers?”code=es19“><img class=“Alignnone size full wp-image-5289”src=“//www.xcmww.com/nr/files/2019/01/spring-mrs-2019.jpg”alt=“”width=“1443”height=“276”srcset=“//www.xcmww.com/nr/files/2019/01/spring-mrs-2019.jpg 1443W,//www.xcmww.com/nr/files/2019/01/spring-mrs-2019-300x57.jpg 300w,//www.xcmww.com/nr/files/2019/01/spring-mrs-2019-768x147.jpg 768W,//www.xcmww.com/nr/files/2019/01/spring-mrs-2019-1024x196.jpg 1024w“尺寸=”(最大宽度:1443px)100vw,1443px“/></a><p><h2>专题讨论会ES19–激子材料和量子点用于能量转换</h2><div class=“sfitemrichtext”><p>multi-激子过程in共轭有机分子and quantum-restricted semiconductor nanocrystals potentially allow the energy in photos to be directed as desired.分子框架或材料纳米结构的设计将允许广泛的光学,设计用于能量转换的电子和机械性能。这次研讨会将强调激子材料的多种应用,包括胶体合成的量子点,pi-conjugated系统,它们的混合成分,应用范围从光伏到生物成像。此外,还将举行一些会议,重点讨论将结构与光物理性质联系起来的基本材料性质,纳米级和中尺度的顺序和组成对薄膜光电性能的影响。专题讨论会将突出最近的进展,并确定新兴市场的新方向,纳米科学的跨学科领域。<p>><div>><a href=“h新利手机客户端ttp://www.rsc.li/nanoscale advances”><span style=“text decoration:underline”><strong>><em>nanoscale advances.<em>><strong>><a>is pleeded to sponsor this session.<div>><div class=“sfmultirerateditmswrp”><h2>topics will include:<h2><ul class=“sfrelatedlist sflist”><li>computa激发材料的可选方法晶体管,光检测器)基于激子或电荷传输</li><li>role of the interface in energy and charge transport</li><li>hierarchical order at the nano-and meoscale(例如有机或QD薄膜)</li><li>胶体合成QDs的新兴应用例如生物学:体内和体外;光催化:太阳能燃料生产;下一代光伏与铅硫族化合物和钙钛矿日本)</li>< /li>< b>Marc Baldo</b>(麻省理工学院,美国)<li><li><b>Bruno Ehrler<b>(amolf,荷兰)</li>< /li>< b>Daniel Gamelin</b>(华盛顿大学,美国)<li><li><b>neil greenham<b>(剑桥大学,英国).<li><li><b>Dirk Guldi.<b>(Friedrich Alexander Universitaet Erlangen Nuernberg,(英国罗彻斯特大学,美国)<li><li><b>Maksym Kovalenko<b>(eidgen_ssische technische hochschule z_rich,瑞士)<li><li><b>Maria Antonietta Loi<b>(University of Groningen,荷兰)<li><li><b>Kenji Matsuda<b>(京都大学,日本).<li><li><b>Hunter McDaniel</b>(ubiqd,股份有限公司。,美国).<li><li><b>Ivan Mora sero.<b>(universitat jaume i,西班牙)<li><li><b>zhijun ning<b>(Shanghai Tech University,中国)<li><li><b>Matthew Panthani<b>(爱荷华州立大学,美国)<li><li><b>Sean Roberts<b>(University of Texas at Austin,美国)</li>< /li>< b>Edward Sargent</b>(多伦多大学,加拿大)<li><li><b>Alina Schimpf<b>(University of California,圣地亚哥美国)</li>< /b> <b>Pete Sercel</b>(加州理工学院)</ b> </b> <b>Tomohiro Shiraki</b>(九州大学,日本)<li><li><b>Susanna Thon<b>(johns hopkins university,美国)</li><li><b>Mark Wilson</b>(多伦多大学,加拿大)<li><li><b>vanessa wood<b>(eth z_rich,瑞士)</li><li><b>新华钟</b>(华东理工大学,新利手机客户端中国)<li><li><b>Joel Yuen-zhou<b>(University of California,圣地亚哥美国).<li><ul><div><p>.<p><div class=“sfmultirerateditmswrp”><h2>symposium organizers<h2><div><b>minglee tang.<b><div><div>university of california,河滨</div><div><b>joey luther</b><div><div>National Renewable Energy Laboratory<div><div><b>Wanli Ma<b><div><div>Soochow University<div><div>Institute of Functional Nano and Soft Materials<div><b>Nobuhiro Yanai<b><div><kyushu University<div><div>Department of Chemistry and Biochestry<新利手机客户端/div><div><h2>further信息</h2><p>register before 5 april 2019 for reduced rates!<p><p>More details are available on the event website:<a href=“https://www.mrs.org/spring2019/registration”><span style=“text decoration:underline”><strong>https://www.mrs.org/spring2019/registration.<strong><span><a><p><div class=“lightsocial\u container”><a class=“lightsocial\u 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class=”lightsocial_a“href=”http://www.technorati.com/faves?add=http%3a%2f%2fwww.xcmww.com%2fnr%2f2019%2f01%2f31%2fmrs-spring-meeting-2019-excitonic-materials-quantum-dots-for-energy-conversion%2f“><img class=“light social”img“src=”//www.xcmww.com/nr/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%2fnr%2f2019%2f01%2f31%2fmrs-spring-meeting-2019-excitonic-materials-quantum-dots-for-energy-conversion%2f“><img class=“light social”img“src=”//www.xcmww.com/nr/wp-content/plugins/light-social/twitter.png“alt=”post on twitter“title=”post on twitter“/><a class=”light social“a”href=“http://www w w.google.com/buzz/post?url=http%3a%2f%2fwww.xcmww.com%2fnr%2f2019%2f01%2f31%2fmrs-spring-meeting-2019-excitonic-materials-quantum-dots-for-energy-conversion%2f“><img class=“light social_img”src=“//www.xcmww.com/nr/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/nr/2019/01/31/mrs-spring-meeting-2019-excittenic-materials-quantum-dots-for-energy-conversion/feed/ CECAM研讨会——复杂环境中纳米颗粒建模和模拟的挑战 //www.xcmww.com/nr/2019/01/29/cecam-workshop-challenges-in-modeling-and-simulations-of-nanoparticles-in-complex-environments/ //www.xcmww.com/nr/2019/01/29/cecam研讨会:复杂环境中纳米颗粒建模和模拟的挑战/回应 星期二,2019年1月29日14:05:33 +0000 汉娜克尔开发编辑 会议 //www.xcmww.com/nr/?P=5274 5月29日2019至5月31日,CECAM-IT_SIMUL 2019位置,意大利理工学院-热那亚,意大利组织者佐伊·库尼亚(雅典学院,希腊)Adam Pegna(Istituto Italiano di Tecnologia,意大利)Marco de Vivo(Istituto Italiano di Technologia,意大利)支持Cecam纳米水平纳米水平纳米水平纳米水平进步等。说明实用信息:注册截止日期为4月12日(最终答案为[…] <p class=“post spec”style=“text-Align:Left”><span style=“font-size:14pt”><strong>5月29日,2019至5月31日,2019年</strong><span><p><h3 class=“post spec”><span style=“font-size:14pt”>location<span><h3><div class=“post spec”>cecam-it ou simul,意大利理工学院-热那亚,意大利希腊)</i></li><li>Adam Pecina <i>(意大利技术研究所,意大利)</i></li>< /li> Marco De Vivo <i>(意大利技术研究所,意大利)<i>><li>><ul>><h3><span style=“font size:14pt“>支持</span>><h3><p><p><a a href http://www.cecaam.org/”目标=“U空白”REl=“no开放者“><img src http http http://www.cecaam.org/上传/组织/logo oid1.png“align=“absm中间”bor<0”/><span span span span style=“font size:14pt““<span span span style<span span style style=“font size:14pt““““““““““><span><span><span><span span><span><span span span><p http http://www.CEcaam.CEcaam.ceam.org/““““><img class=“AlignNonewp-image-5282“src=”//www.xcmww.com/nr/files/2019/01/if x200_nh.jpg“alt=”width=“122”height=“45”srcset=“//www.xcmww.com/nr/files/2019/01/if x200_nh.jpg 540W,//www.xcmww.com/nr/files/2019/01/IF_540x200_NH-300x111.jpg 300w" size ="(max-width: 122px) 100vw,122px“/><span style=“text-decoration:underline”><strong><a href=“http://www.rsc.org/journals books databases/about journals/nanoscale horizons/”><em>nanoscale horizons</em><a><strong><span><p><img class=“Alignnone wp-image-5283”src=“//www.xcmww.com/nr/files/2019/01/if_540x200_nr.jpg”alt=“”width=“124”height=“46”srcset=“http:///www.xcmww.com/nr/files/2019/01/if_540x200_nr.jpg 540W,//www.xcmww.com/nr/files/2019/01/if_540x200_nr-300x111.jpg 300w“size=”(最大宽度:124px)100vw,124px" /> <a href=" http://www.journals-books-databases/aboutjournals/nanoscale/ "><强><em>Nanoscale</em></ span></ p><p >0 <p >0 > "//www.xcmww.com/nr/files/2019/01/IF_540x200_NA.jpg" alt="" "宽度="124"高度="46" srcset="//www.xcmww.com/nr/files/2019/01/IF_540x200_NA.jpg 540w,//www.xcmww.com/nr/files/2019/01/if_540x200_na-300x111.jpg 300w“size=”(最大宽度:124px)100vw,124px“/><a href=“http://www.rsc.org/journals books databases/about journals/nanoscale advances/”><span style=“text decoration:underline”><em><strong>nanoscale advances</strong><em><span><a><p>and more.<p><h3><span style=“font-size:14pt”>description.<span><h3><p><em><strong>practical information:.<strong><em><p><strong>the dead information注册行是April 12<sup>th of 35 min(包括Q&A)。除了策划<em>poster session</em>,有几个<em>短对话~25分钟的槽(~5)可用。如果您想展示您的结果,请在您的应用程序中提及您的首选格式(投稿演讲或海报)。<p><p><p><p>This Workshop will focus on the current challenges in computational simulations of nandomes,包括它们的功能化,从催化(纳米酶)到膜相互作用纳米颗粒。此外,该研讨会将利用几个研究纳米颗粒与材料和生物环境相互作用的实验人员。最终,我们将讨论和辩论计算方法如何进一步发展,以建立新的工具,以便更深入地了解纳米结构和纳米材料。<p>会议将主要关注研究纳米颗粒及其与复杂现实环境的相互作用的方法改进,包括蛋白质膜。我们将在整个研讨会期间与实验人员讨论我们的模型和方法:<p><ol><li><strong>纳米颗粒和膜</strong><li><strong>功能化纳米颗粒</strong><li><strong>实验满足Nanoscience的模拟</strong><li><strong>Nanoscience for health and technology的纳米颗粒</li><ol><p><p><p class=“justify”>有关更多信息,请访问车间网站:<span style=“text-decoration:und新利手机客户端erline”><strong><a href=“https://www.cecam.org/workshop-0-1823.html”>https://www.cecam.org/workshop-0-1823.html<a><strong><span><p><div class=“lightsocial_container”><a 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social_img”src=“//www.xcmww.com/nr/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%2fnr%2f2019%2f01%2f29%2fcecam研讨会在复杂环境中对纳米颗粒建模和模拟的挑战%2f“><img class=“light social\u img”src=“//www.xcmww.com/nr/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/nr/2019/01/29/cecam-workshop-challenges-in-modeling-and-simulations-of-nandom-in-complex-environments/feed/ 国际纳米光子学的学校,2019年6月 //www.xcmww.com/nr/2019/01/22/amolf-nanophonics-school/ //www.xcmww.com/nr/2019/01/22/amolf纳米光子学学校/回复 星期二,2019年1月22日10:18:11 +0000 汉娜克尔开发编辑 会议 //www.xcmww.com/nr/?P=5265 AMOLF的纳米光子学中心正在为博士生和博士后组织一所国际纳米光子学学校,该学校将重点关注现代基础纳米光子学科学中的热门话题。新利手机客户端一批独特的顶尖科学家同意担任学校的讲师,他们都是优秀的教师,请参阅下面的计划草案。[…] <p><a href=“https://amolf.nl/nanophonics school”><img class=“Alignnone size full wp-image-5266”src=“//www.xcmww.com/nr/files/2019/01/logoamolf.png”alt=“”width=“2598”height=“1417”srcset=“//www.xcmww.com/nr/files/2019/01/logoamolf.png 2598w,//www.xcmww.com/nr/files/2019/01/logoamolf - 300 x164.png 300 w,//www.xcmww.com/nr/files/2019/01/logoamolf-768x419.png 768w,//www.xcmww.com/nr/files/2019/01/logoamolf-1024x59.png 1024w“尺寸=”(最大宽度:2598px)100vw,2598px“/>.<a>.<p><p>The Center for Nanophonics at Amolf is organized an<a href=“https://amolf.nl/nanophonics school/”><span style=“text-decoration:underline”><strong>International nanophonics school.<strong>.<a>for phd students and postdocs that will focus on<strong>hot topics in modern basic nanophonics science.<strong>新利手机客户端强大的>独特的顶级科学家阵容强大的>已经同意担任学校的讲师,他们都是优秀的教师,请参阅下面的计划草案。The number of attendees is limited to 80.</p><p><span style="text-decoration: underline"><a href="https://amolf.nl/wp-content/uploads/2018/12/181219_Program_AMOLF_International_Nanophotonics_Summerschool.pdf"><strong>Unique program format</strong></a></span><br />The school has a unique format: each lecturer is asked to give a <strong>one-hour tutorial</strong>,那是专为学校准备的。本教程是由该领域的新学生的基础知识构成的,然后讨论更复杂的概念。演讲幻灯片将提供给与会者。本教程后面是一个<strong>30分钟。由讲师突出显示Talk.<p><p>speakers will include:<p><ul><li>femius koenderink,阿莫尔夫让-雅克·Greffet李阿姆斯特丹李< / > < >,普蒂克学院巴黎普林斯顿大学乌得勒支大学帝国理工学院,李伦敦李< / > < > Ewold Verhagen,阿莫尔夫阿姆斯特丹材料物理中心,李李圣塞巴斯蒂安< / > < > Stepfan Goetzinger,马克斯·普朗克光科学研究所,新利手机客户端Erlangen</li><li>Elaine li,奥斯汀大学德克萨斯州多伦多大学阿贝光子学中心,珍娜<<li>Mikael Rechtsman,宾夕法尼亚州立大学<br/>欢迎博士生和博士后注册学校。与会者人数限制在80人以内。<p><p><strong>student/postDoc presentations<strong><br/>所有学校与会者都被邀请展示关于他们研究的海报。此外,该项目共有10个名额可供口头陈述。Abstracts can be submitted to apply for these talks.</p><p> </p><p><strong>Important Dates</strong></p><p>Early-bird registration ends 1 March 2019</p><p>Oral abstract submission ends 1 April 2019</p><div class="lightsocial_container"><a class="lightsocial_a" 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src="//www.xcmww.com/nr/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/nr/2019/01/22/amolf-nanophonics-school/feed/ 恭喜Matthew Otten博士:2018年最佳NST博士后演讲奖 //www.xcmww.com/nr/2019/01/07/恭喜-to-dr-matthew-otten-2018-best-nst-postforder-fellow-presentation-awardeedee/ //www.xcmww.com/nr/2019/01/07/恭喜-to-dr-matthew-otten-2018-best-nst-postforder-fellow-presentation-awardee/回复 周一,2019年1月7日10:08:44+0000 汉娜克尔开发编辑 海报奖 //www.xcmww.com/nr/?P=5263 纳米科学与技术(新利手机客户端NST)博士后研究员展示系列是阿贡国家实验室的一个机会,博士后可以展示他们的研究成果,以促进博士后和工作人员科学家之间的交流。最好的演讲是每年通过投票选出的,每个参加演讲的人都可以参加。2018年版的获胜者被宣布为[…] <p>纳米科学与技术(NST)博士后研新利手机客户端究员演示系列实体。每年通过参加演讲的任何人都可以获得的选票来选择最佳的演讲。<p>2018年版的获胜者在12月14日的NST部门假日午餐上宣布,2018.<span style=“text-decoration:underline”><strong>Dr Matthew Otten-<strong><span>已获得2018年NST最佳博士后研究员演讲奖,并已获得由皇家化学学会期刊赞助的200美元奖<a href=“http://www.rsc.org/journals books databases/about journals/nanoscale/”><span style=“t新利手机客户端ext-decoration:underline“><strong><em>nanoscale-<em><strong><span><a>,一份高影响力国际期刊,在纳米科学和纳米技术的各个领域发表实验和理论文章。<p>Matt从伊利诺伊理工学院获得学士学位,并从康奈尔大学获得物理学博士学位。新利手机客户端他于2017年秋季加入NST部门,成为著名的<a href=“https://www.anl.gov/hr/Maria Goeppert Mayer Fellowship”><strong><span style=“text-decoration:underline”>Maria Coepper Mayer Fellowship<span><strong><a>available at argonne national laboratory to top science and engineering young talents.新利手机客户端Matt正在研究纳米系统(如金属纳米结构与量子点相互作用)中量子信息和传感过程的理论和建模。钻石中的nv中心动力学。<p>恭喜Matt!<p><div class=“lightsocial_container”><a class=“lightsocial_a”href=“http://digg.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fnr%2f2019%2f01%2f07%2f恭喜-to-dr-matthew-otten-2018-best-nst-postforder-fellow-presentation-awardee%2f&title=恭喜+to+dr+matthew+otten%3a+2018+best+nst+postforder+fellow+presentation+awardee“><img class=“light social_img”src=“//www.xcmww.com/nr/wp-content/plugins/light-social/digg.png“alt=”digg this“title=”digg this“/><a>;<a 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//www.xcmww.com/nr/2018/12/04/9th-international-conference-on-advanced-materials-and-nanotechnology-amn9/#respond 星期二,2018年12月4日10:23:54+0000 汉娜克尔开发编辑 会议 //www.xcmww.com/nr/?p=5257 我们谨代表麦克迪亚米德先进材料与纳米技术研究所,热烈邀请您参加第九届国际先进材料与纳米技术会议(AMN9)。它将于2月10日至14日在惠灵顿的新西兰国家博物馆举行。 <p><a href=“http://www.cmnzl.co.nz/amn9 conference/”><img class=“Alignnone size full wp-image-5258”src=“//www.xcmww.com/nr/files/2018/12/amn9.jpg”alt=“”width=“1018”height=“170”srcset=“//www.xcmww.com/nr/files/2018/12/amn9.jpg 1018w,//www.xcmww.com/nr/files/2018/12/amn9-300x50.jpg 300w,//www.xcmww.com/nr/files/2018/12/amn9-768x128.jpg 768w“尺寸=”(最大宽度:1018px)100vw,我们谨代表麦克迪米德先进材料与纳米技术研究所,热烈邀请您参加“a href="http://www.cmnzl.co.nz/amn9-conference/"><span style="text-decoration: underline"><strong>9th International Conference On Advanced Materials and nano </span></a> (AMN9),这将在新西兰国家博物馆Te Papa Tongarewa举行,in Wellington from the<span>10 to the 14th of February 2019</span><p><p><p>amn9 is the ninth event in a biennial conference series,which focuss on cutting-edge research in nanoscience and nanotechnology.新利手机客户端所涵盖的主题反映了Macdiarmid研究所的广泛科学兴趣,范围从纳米生物界面,纳米医学,光伏材料,新的电子设备(包括自旋电子学和Valleytronics)。该方案将包括一系列世界领先的全体发言者,前沿主题演讲,以及提供口头和海报演示。目标是创造一个刺激的环境来呈现新的结果和交流科学思想。<p><p>请访问该网站,了解有关演讲者和完整注册详细信息的更多详细信息:<a href=“http://www.cmnzl.co.nz/amn9 conference/”><span style=“text decoration:underline”><strong>http://www.cmnzl.co.nz/amn9 conference/<strong><span><a><p><p><p><header class=“chunk header”><h1 class=“chunk title”><span style=“font-size:14pt;font-family:Georgia,帕拉蒂诺serif“>重要日期</span><h1><header><div class=“chunk body content”><table><tbody><tr><td valign=“middle”>registration open<td><td valign=“middle”>now<td><td><td><tr><td valign=“middle”>abstract submission<td><td><td><tr><td valign=“middle”>notification of abstract submission<td><td valign=“middle”>dle“>completed<td><td><td><tr><td valign=“middle”><strong>earlybird registration closes<strong><td><td valign=“middle”><strong>14 december 2018<strong><td><td><td><tr><td valign=“middle”><strong>standard registration applies<strong><td><td valign=“middle”><strong>15 december 2018<td><td><tr><td valign=“middle”>“>AMN9 Conference<td><td valign=“middle”>11–14 february 2019<td><td><td><tr><tbody><table><div><div class=“lightsocial_container”><a class=“lightsocial_a”href=“http://digg.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fnr%2f2018%2f12%2f04%2f9th-international-conference-on-advanced-materials-and-nanotechnology-amn9%2f&title=9th+international+conference+on+advanced+materials+and+nanotechnology+%28amn9%29“><img class=“light social\uimg”src=“//www.xcmww.com/nr/wp-content/plugins/light-social/digg.png”alt=“digg this”title=“此“/><a><a class=“lightsocial_a”href=“http://www.reddit.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fnr%2f2018%2f12%2f04%2f9th-international-conference-on-advanced-materials-and-nanotechnology-amn9%2f&title=9th+international+conference+on+advanced+materials+and+nanotechnology+%28amn9%29“><img class=“light 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class=”lightsocial_a“href=”http://www.technorati.com/faves?add=http%3a%2f%2fwww.xcmww.com%2fnr%2f2018%2f12%2f04%2f9th-international-conference-on-advanced-materials-and-nanotechnology-amm9%2f“><img class=“light social”img“src=”//www.xcmww.com/nr/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%2fnr%2f2018%2f12%2f04%2f9th-international-conference-on-advanced-materials-and-nanotechnology-amm9%2f“><img class=“light social”img“src=”//www.xcmww.com/nr/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%2fnr%2f2018%2f12%2f04%2f9th-international-conference-on-advanced-materials-and-nanotechnology-amm9%2f“><img class=“light social”src=“//www.xcmww.com/nr/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/nr/2018/12/04/9th-international-conference-on-advanced-materials-and-nanotechnology-amn9/feed/ 二维材料的纳米光子学(N2D 2019) //www.xcmww.com/nr/2018/11/22/nanophotonics-of-2d-materials-n2d-2019/ //www.xcmww.com/nr/2018/11/22/nanophotonics-of-2d-materials-n2d-2019/#respond 清华大学,2018年11月22日13:41:12+0000 汉娜克尔开发编辑 会议 //www.xcmww.com/nr/?P=5241 在过去的十年里,原子性薄材料中轻物质相互作用的研究活动越来越多,比如石墨烯,拓扑绝缘体,薄极性和半导体层以及其他范德华材料,包括它们的异质结构。二维材料的纳米光子学(N2d)旨在通过提供一个环境来探索它们的光学现象,在这个环境中,来自[…] <p><a href=“http://n2d-2019.dipc.org/”><img class=“Alignnone size full wp-image-5242 AlignCenter”src=“//www.xcmww.com/nr/files/2018/11/n2d-2019.jpg”alt=“”width=“984”height=“520”srcset=“//www.xcmww.com/nr/files/2018/11/n2d-2019.jpg 984W,//www.xcmww.com/nr/files/2018/11/n2d - 2019 - 300 - x159.jpg 300 w,//www.xcmww.com/nr/files/2018/11/n2d-2019-768x406.jpg 768w“尺寸=”(最大宽度:984px)100vw,984px“/>.<a><p><p><span style=“color:000000”>over the past decents,原子性薄材料中轻物质相互作用的研究活动越来越多,比如石墨烯,拓扑绝缘体,薄极性和半导体层以及其他范德华材料,包括它们的异质结构。<strong>Nanophonotics of 2d materials(N2d)<strong>aims to explore their optical phenomens by providing a setting where studiors from different fields can conclusion;通过提供不同领域的研究人员可以召开会议的场所,探索其光学现象;经典和量子光学;激子,声子和等离子体;远场和近场分光镜;多体光学物理;拓扑光子学;还有很多其他的。通过这些相互作用,N2D致力于提供一个可以形成统一概念的环境,新的想法受到启发,二维材料纳米光子学理论研究和实验研究的新前沿可以出现。.<span><p><p><p><p><span style=“text-decoration:underline;font-size:12pt;color:000000”><strong>meet the editor and discus high impact publishing.<strong><span><p><span style=“color:000000”>as part of n2d,将有一个会议小组,讨论来自美国化学学会的编辑在2d中的高影响力出版。自然出版,以及英国皇家化学学会。<span style=“t新利手机客户端ext-decoration:underline”><a href=“http://www.rsc.org/journals books databases/about journals/nanoscale/editional board members/35; nr撘corr”><strong>教授qing dai</strong><a><span>,NCNST中国,将参加小组讨论,分享作者作为助理编辑的最新经验和重要提示tp://www.rsc.org/journals books databases/about journals/nanoscale advances/“><span style=“text-decoration:underline”><strong><em>nanoscale advances</em><strong><span><a><p><p><p><p><span style=“text-decoration:underline;color:000000”><b><span style=“font-size:medium”>important dates</span><p><span style=“color:000000“>海报稿件的摘要提交仍处于打开状态.<span><br/><b><span style=“color:”><span style=“color:”>Early Bird.<span>.<b><a href=“http://n2d-2019.dipc.org/n2d/cgi-bin/appl.pl”target=“_blank”rel=“noopener”><span style=“text decoration:underline”><strong>registration.<strong><span></a><span style=“color:000000“><b>截止日期:<b>December 15</span><p>.<p><p><span style=“color:000000”>check out the conference website for a full list of speakers:<span><a href=“http://n2d-2019.dipc.org/”><span style=“text decoration:underline”><strong>http://n2d-2019.dipc.org/<strong><a>and for the conference program:<a href=“http://n2d-2019.dipc.org/n2d/cgi-bin/talks/allprint.pl“><span 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full wp-image-5235 AlignCenter”src=“//www.xcmww.com/nr/files/2018/08/nanodds-2018.jpg”alt=“”width=“642”height=“77”srcset=“//www.xcmww.com/nr/files/2018/08/nanods-2018.jpg 642w,//www.xcmww.com/nr/files/2018/08/nanodds-2018-300x36.jpg 300w“尺寸=”(最大宽度:642px)100vw,642px“/></a>2018年纳米医药和药物交付研讨会将在波特兰举办,俄勒冈州。本次研讨会的目标是突出纳米医学和药物交付领域的新突破性发现和发展。这一领域的革命性进展需要在包括纳米技术在内的各种领域的研究人员之间进行协作,材料科学,新利手机客户端成像,细胞生物学,组织工程,基因编辑,药物和基因传递以及临床研究。<p>研讨会将在协同生命科学大楼(CLSB)举行,新利手机客户端下一代健康和科学教育和研究机构,将俄勒冈三所大学的资源和脑新利手机客户端力结合在一起––<a href=“http://oregon state.edu/”target=“blank”rel=“noopener”>oregon州立大学–(osu),<a href=“http://www.ohsu.edu/xd/”target=“blank”rel=“noopener”>oregon health&scienCE大学–(OHSU)and<a href=“https://www.pdx.edu/”target=“_blank”rel=“noopener”>Portland State University–(PSU)。<p><p>The full list of speakers is available on the conference website–<span style=“text decoration:underline”><strong><a href=“https://www.nanodds2018.org/speakers/”>https://www.nanodds2018.org/speakers/</a></STRONG><span><p><a 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会议 //www.xcmww.com/nr/?p=5232 Nanoox 2018–第9届纳米毒理学国际会议将于2018年9月18日至21日在诺伊斯多林酒店举行,德国。2018年Nanoox的重点将是“纳米材料风险评估的新工具”,如“通读”,分组和分类。该活动将为所有感兴趣的科学家提供一个平台,行业合作伙伴和监管机构讨论 <p><a href=“http://nanotox2018.org/”><strong>nanotox 2018–9th international conference on nanotoxicology</strong>>a>will take place this year between<strong>18-21 september 2018</strong>at<strong>dorint hotel neuss,德国。.<strong><p><p>.<p><p>The special focus of nanotox 2018 will be“new tools in risk assessment of nanotmaterials”such as read across,分组和分类。该活动将为所有感兴趣的科学家提供一个平台,行业合作伙伴和监管机构讨论纳米安全研究的最新成果和发展。<p>The full list of general speakers is available on the<a href=“http://nanotox2018.org/”>conference website</a>including the portal to submit papers and register before the deadline before the deadline before the deadline below.<p><strong>key deadline:.<strong></p><p>Appearance in the List of Participants 31 August 2018 p><div class=“lightsocial_container”><a 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reader)“title=”google buzz(aka.google reader)“/>.<a>.<div> //www.xcmww.com/nr/2018/08/29/nanotox-2018-9th-international-conference-on-nanotoxicology/feed/ 纳米科技2018 -十周年国际纳米材料会议-研究与应用 //www.xcmww.com/nr/2018/08/07/nanocon-2018-10周年国际会议纳米材料研究应用/ //www.xcmww.com/nr/2018/08/07/nanocon-2018-10周年国际会议纳米材料研究应用回复 星期二,2018年8月7日08:04:39+0000 汉娜克尔开发编辑 会议 //www.xcmww.com/nr/?p=5219 Nanocon 2018–10周年纳米材料国际会议–研究与应用17(上午10点)-19(下午1点)2018年10月Voronez I酒店,布尔诺,捷克、EU https://www.nanocon.eu会议摘要将被接受为五个主题会议:电子纳米材料,磁性和光学应用。碳纳米结构,量子点。工业[…] <p><a href=“https://www.nanocon.eu/cz/”><img class=“wp-image-5220 AlignRight”src=“//www.xcmww.com/nr/files/2018/08/logo-nnc18.png”alt=“”width=“355”height=“135”srcset=“//www.xcmww.com/nr/files/2018/08/logo-nnc18.png 1108w,//www.xcmww.com/nr/files/2018/08/logo-nnc18-300x114.png 300w,//www.xcmww.com/nr/files/2018/08/logo-nnc18-768x293.png 768w,//www.xcmww.com/nr/files/2018/08/logo-nnc18-1024x390.png 1024w“尺寸=”(最大宽度:355px)100vw,355px“/></a><p><p>Nanocon 2018–10周年国际纳米材料会议–Research&Application<br/>17(10 a.m.)–19(1 p.m.)October 2018<br/>Hotel Voronez I,布尔诺,捷克、eu<br/><strong><a href=“https://www.nanocon.eu”>https://www.nanocon.eu<a>><strong>><p>><p>><p>><p>><p>><p>><p>><p>><p>><p>><p>><p>conference abstracts will be accepted into five themed sessions:<p>><ul>><li>nanommaterials for electronic,磁性和光学应用。碳纳米结构,量子点。<li><li>纳米材料的工业和环境应用。<li><li>生物纳米技术,纳米材料在医学上。.<li><li>纳米材料的监测和毒性。.<li><li>先进的制备方法和纳米材料的表征。<li><ul><p>排名靠前的主旨演讲和受邀演讲人已经确认了他们的出席。全体讲座将由<span style=“text-decoration:underline”><a href=“http://www.photonics.buffalo.edu/prasad”>prof.博士。帕拉斯Prasat(布法罗大学)纽约州美国)专注于光子学和生物学对能源和医疗保健的影响,而<span style="text-decoration: underline"><a href="https://graphene.nus.edu.sg/team_member/antonio-castro-neto/">Prof。博士。安东尼奥HCastro Neto(新加坡国立大学和波士顿大学/美国)石墨烯研究的主要理论家之一。<p><p>确认的演讲者还包括:<span style=“text-decoration:underline”><a href=“https://www.nanocon.eu/en/profile/432p prof dr wilfired vandervorst/”>prof.博士。右舵Vandervorst < / > < / span >(IMEC,Leuven比利时)<span style=“text-decoration:underline”><a href=“https://www.nanocon.eu/en/profile/428p-prof-anderi-v-kabashin/”>prof.博士。安德烈·V。Kabashin < / > < / span >(CNRS,法国的大学法国)<span style=“text-decoration:underline”><a href=“https://www.nanocon.eu/en/profile/429p dr antonin fejfar/”>dr.Antonin Fejfar</a></span>(中国科学院物理研究所,布拉格,捷克共和国),<a href=“https://www.nanocon.eu/en/profile/430p prof dr kall heinz ernst/”>prof.博士。卡尔·海因茨·恩斯特(Karl Heinz Ernst)(瑞士材料科学技术联邦实验室,新利手机客户端的飞行瑞士)和其他国家。更多受邀演讲人可在会议的网页上获得。<strong><span style=“text-decoration:underline”><a href=“https://www.nanocon.eu/en/”>这里</a><span><strong><p><strong>important frequendations:<strong><p><ul><li>abstract submission<strong>31 august.<strong><li>registration<strong>17 september.<strong><li><ul><div class=“lightsocial_container”><a 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//www.xcmww.com/nr/2018/07/11/nanoscale-and-nanoscale-advances-editorial-board-update/ //www.xcmww.com/nr/2018/07/11/nanoscale and nanoscale advances编辑委员会更新/回复 结婚,2018年7月11日14:06:50+0000 汉娜克尔开发编辑 董事会新闻 影响因子 //www.xcmww.com/nr/?p=5192 我们编辑委员会有几个令人兴奋的新任命,我们想与你们分享。联合主编第一,我们高兴地宣布,德克·古尔迪教授(弗里德里希·亚历山大大学埃朗根-纽伦堡分校,德国)被任命为纳米级和纳米级进展的联合主编!他将亲自为社论提供支持和指导。 <p><a href=“http://www.rsc.org/journbooks数据库/关于期刊/纳米级的数据库/关于期刊/纳米级的数据库/“><img class=“Alignnone-中等wp-image-5216”src=“http://blog.rsc.org/nr/file/2018/07/07/nr×378pxat-res px_白色-base-and-mark-1-300x91.jpg”alt=300”height=“91”srcsset=“http://blog.rsc.org/nr/文件/2018/2018/2018/2018/07/07/nr x378px_at-res_381px_381px_白色1px_381px_381px-基础设施E-and-Mark-1-300x91.JPG 300W,//www.xcmww.com/nr/files/2018/07/nr x378px_at-res_381px_white-base-and-mark-1-768x234.jpg 768W,//www.xcmww.com/nr/files/2018/07/nr x378px_at-res_381px_white-base-and-mark-1-1024x312.jpg 1024W,//www.xcmww.com/nr/files/2018/07/nr x378px_at-res_381px_white-base-and-mark-1.jpg 1241w“尺寸=”(最大宽度:300px)100vw,></a> <a href=" http://www.rsc.org/journals-books-databases/aboutjournals/nanoscing-advances/ "><img class="alignnone size-medium wp-image-5217" src=" //www.xcmww.com/nr/files_white -base-300x91.jpg" alt="" " width="300" height="91" srcset=" //www.xcmww.com/nr/files/1241x378px_at - res_381px_white -base-300x91.jpg 300w,//www.xcmww.com/nr/files/2018/07/sb x378px_at-res_381px_white-base-768x234.jpg 768W,//www.xcmww.com/nr/files/2018/07/sb x378px_at-res_381px_white-base-1024x312.jpg 1024W,//www.xcmww.com/nr/files/2018/07/sb x378px_at-res_381px_white-base.jpg 1241w“尺寸=”(最大宽度:300px)100vw,300px“/>.<a><p><p>我们有几个令人兴奋的新预约到我们的编辑委员会,我们希望与您分享。<p><p><span style=“font-size:14pt”><strong>co editor in chief.<strong><span><p><p><a href=“https://www.chemistry.nat.fau.eu/guldi group/head of the group/”><img class=“AlignLeft w新利手机客户端p-image-5193 size medium”src=“//www.xcmww.com/nr/files/2018/07/dirk-m.-guldi-200x300.jpg“alt=”width=“200”height=“300”srcset=“//www.xcmww.com/nr/files/2018/07/dirk-m.-guldi-200x300.jpg 200w,//www.xcmww.com/nr/files/2018/07/dirk-m.-guldi-768x1154.jpg 768W,//www.xcmww.com/nr/files/2018/07/dirk-m.-guldi-682x1024.jpg 682W,网址://www.xcmww.com/nr/files/2018/07/dirk-m.-guldi.jpg 1363W“尺寸=”(最大宽度:200px)100vw,200px“/>.<a>首先,我们很高兴地宣布,教授<span style="text-decoration: underline"><strong><a href=" https://www.y.nat.fau.eu/guldi-group/head of新利手机客户端 group/">Dirk Guldi</a></strong></span>,德国)已被任命为纳米级的联合主编他将为编辑委员会和团队提供实践支持和指导,与主编合作并协助主编促进和发展这两种期刊。<p><p>having previously been service as chair of the<em>chemical society reviews<em>editional board,德克有领导和指导编辑团队的经验,以及他对纳米级进展的密切参与和熟悉,以及担任纳米水平的科学编辑他还对整个纳米级期刊系列拥有独特而有价值的编辑视角。<p><p>check out some of dirk's recent work:<p><p><a href=“http://pubs.rsc.org/en/content/articlelanding/2018/sc/c8sc02492h!DivAbstract“><span style=”text decoration:underline“><strong>interfaceing pherlins and carbon nancenoves through mechanical links.<strong><span><a>,<em>化学科学新利手机客户端2018,高级文章<<p><a href=“http://pubs.rsc.org/en/content/articlelanding/2018/tc/c8tc00769a!DivAbstract“><span style=”text decoration:underline“><strong>improving charge injection and charge transport in cuo based p-type dsscs–a quick and simple deposition method for small cuo nandomes.<strong><span><a>,<em>材料化学杂志新利手机客户端2018,<强> 6,<strong>5176-5180<p><p><a href=“http://pubs.rsc.org/en/content/articlelanding/2018/nr/c8nr01502c!DivAbstract“><span style=”text decoration:underline“><strong>Tuning Pentacene-based Dye-sensized solar cells</strong><span><a>,<em>纳米级2018年,<strong>10</strong>,8515-8525<p><p>.<p><p><span style=“font-size:14pt”><strong>new associate editors.<strong><p><p><strong>two new associate editors have joined the<em>nanoscale.<em>team!<p><p><p><strong><a a a href=“http://英语.edu.na纳米tr.cas.cn/rf/Prosso/201508/T20150821 U 302882.html“><img class=“Alignrightwp-image-5194 size中等”src=“http://博客.rsc.org/nr//2018/2018/07/4576清-戴ffc-900-225x300.JPstronstronstron强><强><p><p><强><强><<<a a a a href http://http://英语.edu.edu.edu.纳米tr.纳米tr/f/f/f/f/f/f/f/f/f/f/f/ProProProf/201508/201508/201508/T2015-225x300.jpG225W,//www.xcmww.com/nr/files/2018/07/4576_qing-dai_f2c-900.jpg 480w" size ="(max-width: 225px) 100vw,225px“/><a><a href=“http://english.edu.nanottr.cas.cn/rf/professors/201508/t20150821_.html”><span style=“text-decoration:underline”>qing dai<span><a><strong>received phd degree in nanotoptics at the department of engineering from university of cabridge,获帝国理工学院电子电气工程硕士学位后,伦敦。在剑桥大学高级光子学和电子中心(CAPE)获博士后任命后,他加入了国家纳米科学和技术中心(NCNST,新利手机客户端位于北京)2012年。现在他是NCNST的教授,并担任纳米光子学部门的主管。<p>他的研究兴趣包括低维纳米材料,等离子体激元Nearfield光学特性和超快电子发射。<p>查看他最近的一些工作:<p><p><a href=“http://pubs.rsc.org/en/content/articlelanding/2017/nr/c7nr05919a!DivAbstract“><span style=”text decoration:underline“><strong>higher order fano graphene metamaterials for nanoscale optical sensition.<strong>,<em>nanoscale.<em>,2017年,<强> 9 < /强>,14998-15004<<p><a href=“http://pubs.rsc.org/en/content/articlelanding/2017/ra/c7ra06965k!DivAbstract“><span style=”text decoration:underline“><strong>high performance boronaic acid containing hydrogel for biocompatible continuous gluch monitoring.<strong>,<em>rsc advances.<em>,2017年,7 <强> < / >强,41384-41390<p><a href=“http://pubs.rsc.org/en/content/articlelanding/2017/nr/c6nr07081g!DivAbstract“><span style=”text decoration:underline“><strong>study of graphene plasmons in graphene–mos2 hyperiostructures for optoelectronic integrated devices.<strong>>,<em>nanoscale.<em>,2017年,<强> 9 < /强>,//www.xcmww.com/nr/files/2018/07/4577_liberato.manna_f2c -900-225x300.jpg" alt="" 237" height="316" srcset=" //www.xcmww.com/nr/files/liberato.manna_f2c -900-225x300.jpg 225w "//www.xcmww.com/nr/files/2018/07/4577_liberato-manna_f2c-900.jpg 480w" size ="(max-width: 237px) 100vw,237px“/><a><a href=“https://www.iit.it/people/libraeo manna”><span style=“text decoration:underline”>libraeo manna</span><a><strong>received his m.sc.199新利手机客户端6年在意大利巴里大学获得化学博士学位。2001年在同一所大学的新利手机客户端化学科学专业。在他的博士学位期间。后来作为博士后,他在加州大学伯克利分校(美国)工作。2003,他回到意大利,在位于莱切(意大利)的CNR-INFM国家纳米技术实验室担任工作人员科学家,并于2006年在那里负责纳米化学部门。新利手机客户端2009年4月,他搬到热那亚的意大利理工学院担任纳米化学系主任。新利手机客户端自2015年以来,他一直担任材料和纳米技术项目的IIT副总监。<p>他的专业领域包括:功能性无机材料和设备,功能性纳米结构材料,和表面,接口,和应用程序。<p><p>check out some of his recent work:<p><p><a href=“http://pubs.rsc.org/en/content/articlelanding/2018/nr/c8nr02381f!DivAbstract“><span style=“text decoration:underline”><strong>选择性锑还原启动InSb量子点的成核和生长2018年,<strong>10</strong>,11110-11116<p><p><a href=“http://pubs.rsc.org/en/content/articlelanding/2018/nr/c7nr07283j”!DivAbstract“><span style=”text decoration:underline“><strong>generating plasmanon hyperstructures by阳离子交换and redox reactions of covellite-cus nanocrystals with au<sup>3+<sup>ions.<strong>,<a>,<em>nanoscale<em>,2018年,<strong>10</strong>,2781-2789<<p><a href=“http://pubs.rsc.org/en/content/articlelanding/2018/ra/c8ra03399d!divAbstract“><span style=”text decoration:underline“><strong>operating the形态学of the nano oxide domain in aucu–iron oxide dumbell like nanocomposites as a tool to modify magnetic properties.<strong>,<a>,<em>rsc advances.<em>,2018年,8 <强> < / >强,22411-22421<p><p><p><p>finally,您可能已经看到,<em>纳米级的2017年影响系数显示为7.233*。我们很高兴看到我们社区的持续支持,并感谢您与我们一起发布您的高质量纳米科学工作。<p><span style=“font-size:10pt”>2017年期刊引文报告,新利手机客户端Clarivate Analytics June 2018.<span><p><div class=“lightsocial_container”><a class=“lightsocial_a”href=“http://digg.com/submit”?url=http%3a%2f%2fwww.xcmww.com%2fnr%2f2018%2f07%2f11%2fnanoscale and nanoscale advances编辑板更新%2f&title=nanoscale+and+nanoscale+advances+editional+board+update“><img class=“light social\u img”src=“//www.xcmww.com/nr/wp-content/plugins/light-social/digg.png”alt=“digg this”title=“digg”/>=<a>light social\u 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