搜索结果: 46-60 共查到“理学 Nano”相关记录131条 . 查询时间(0.082 秒)
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南方科技大学材料科学与工程系李贵新课题组在《Nano Letters》发表两篇非线性光学超构表面最新研究成果(图)
南方科技大学材料科学与工程系 李贵新课题组 Nano Letters 非线性光学 超构表面
2018/1/31
近日,南方科技大学材料科学与工程系副教授李贵新课题组在《Nano Letters》杂志(影响因子:12.712)发表了两篇非线性光学超构表面领域的最新研究成果。李贵新为两篇论文的通讯作者。
2018年SPIE生物和纳米混合光子和电子材料和器件会议(SPIE Bio and Nano Hybrid Photonic and Electronic Materials and Devices 2018)
2018年 SPIE 生物和纳米混合光子和电子材料和器件 会议
2017/11/27
This conference, Bio and Nano Hybrid Photonic and Electronic Materials and Devices, is sponsored by SPIE Optics + Photonics as part of the Nanoscience + Engineering track. It was first launched in 200...
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FUNSOM-ACS NANO双边学术研讨会于2017年8月24-25日在独墅湖校区909楼B厅会议室成功举行。会议邀请了国际知名期刊ACS NANO主编、美国加州大学洛杉矶分校Paul S. Weiss教授,以及5位副主编,分别是香港城市大学Andrey L. Rogach教授、新加坡国立大学Andrew T. S. Wee教授、美国德雷塞尔大学Yury Gogotsi教授、澳大利亚墨尔本大学P...
Nano Fiber Feels Forces and Hears Sounds Made by Cells
Nano Fiber Feels Forces Hears Sounds Cells
2017/7/20
Engineers at the University of California San Diego have developed a miniature device that’s sensitive enough to feel the forces generated by swimming bacteria and hear the beating of heart muscle cel...
2017OSA集成光子学研究,硅和纳米光子学专题会议(Integrated Photonics Research,Silicon,and Nano-Photonics)
2017 OSA 集成光子学研究,硅和纳米光子学 专题会议
2017/4/25
IPR brings together experts from both academia and industry for an open discussion of cutting-edge research, trends and problems. IPR 2016 will continue with the broadened scope started in 2015, which...
Nano-SPEARs gently measure electrical signals in small animals
Nano-SPEARs gently measure electrical signals small animals
2017/4/27
Microscopic probes developed at Rice University have simplified the process of measuring electrical activity in individual cells of small living animals. The technique allows a single animal like a wo...
2017年国际等离子体和纳米光子学研讨会(International Symposium On Plasmonics and Nano-photonics ) (iSPN)
2017年国际等离子体和纳米光子学研讨会
2017/3/9
The International Symposium On Plasmonics and Nano-photonics (iSPN) aims to build a platform for scientists in the field of Electromagnetics and Plasmonics, for discussing their latest research result...
2017等离子体光学和纳米光学国际研讨会(The International Symposium On Plasmonics and Nano-photonics) (iSPN)
2017年 等离子体光学 纳米光学 研讨会
2017/3/7
The International Symposium On Plasmonics and Nano-photonics (iSPN) aims to build a platform for scientists in the field of Electromagnetics and Plasmonics, for discussing their latest research result...
The International Symposium On Plasmonics and Nano-photonics(iSPN)
The International Symposium Plasmonics and Nano-photonics
2017/2/15
Te International Symposium On Plasmonics and Nano-photonics (iSPN) aims to build a platform for scientists in the field of Electromagnetics and Plasmonics, for discussing their latest research results...
2017年生物分子微/纳米组装,生产,操控和蜂窝应用研讨会(Symposium NM10—Micro/Nano Assembling,Manufacturing and Manipulation for Biomolecular and Cellular Applications)
2017年 生物分子微/纳米组装,生产,操控和蜂窝应用 研讨会
2017/2/14
Today’s advances in micro/nanotechnology are revolutionizing the traditional paradigm of biomedical research. Owing to the unique properties, micro/nanoparticles find an array of applications in molec...
第十届等离子纳米技术与科学国际会议(10th International Conference on Plasma-Nano Technology&Science)
第十届 等离子纳米技术与科学 国际会议
2017/1/12
ISPlasma/IC-PLANTS is specialized international symposium that brings together about 1,000 world-leading scientists and engineers in Nagoya area, Japan to discuss latest researches in the fields of ad...
2017第10届高级制造技术微/纳米光学和光子学研讨会(Advanced Fabrication Technologies for Micro/Nano Optics and Photonics X)
2017 第10届 高级制造技术微/纳米光学和光子学 研讨会
2017/1/12
OPTO is organized into eight tracks. Choose a track and click to see the list of conferences.Review conference details by clicking on the titles below. These details include paper titles, authors, sch...
The International Nano-Optoelectronics Workshop (iNOW) is one of the most significant academic conferences in the field of optoelectronics devices. Since 2007, iNOW has been held 10 times successfully...
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最近,力学所江进武教授与合作者一起在负泊松比纳米材料方面取得了若干进展,相关研究成果均以上海大学为第一作者单位发表在《Nano Letters》、《Applied Physics Reviews》等国际著名杂志上。具有负泊松比特性的材料也被称作“拉胀材料”。顾名思义,这类材料在拉伸作用下会在横向发生膨胀,这和常见的正泊松比材料(例如橡胶)的形变方式刚好相反。拉胀材料具有一些优良的力学和物理特性,例...
Symposium NM10—Micro/Nano Assembling, Manufacturing and Manipulation for Biomolecular and Cellular Applications
biomedical applications biophysics
2016/7/28
Today’s advances in micro/nanotechnology are revolutionizing the traditional paradigm of biomedical research. Owing to the unique properties, micro/nanoparticles find an array of applications in molec...