【学术视频】第五届二维材料国际会议 | 南京大学施毅教授
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图 | 施毅
题 目:Solution-processed 2D molecular crystals: fabrication techniques, physics and device applications
报告人:施毅单 位:南京大学时 间:2019-10-23地 点:苏州金鸡湖国际会议中心
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报告摘要
Based on intensive research, organic field-effect transistors (OFETs) will likely remain at the zenith in information science for many years due to their numerous potential applications in portable and smart electronic devices. Elucidating the intrinsic charge-transport behavior and realizing functional OFETs with superior device characteristics have been the cornerstones for the sustainable advancement in organic electronics. The emerging 2D molecular crystals (2DMCs) have become prosperous in the past few years, because they offer a revolutionary opportunity to overcome these obstacles. In particular, 2DMCs, which display a high uniform morphology, can be prepared using low-cost and scalable solution-based techniques. More importantly, their highly tunable molecular arrangement at a 2D limit is extraordinarily beneficial in property exploration and device optimization. In this article, the recent breakthroughs in material preparation, transistor applications, and physics of solution-processed 2DMCs are reviewed, providing a promising avenue toward high-performance, multifunctional, and diversiform organic electronic devices.
个人简介
施毅,教授、博导,国家示范性微电子学院院长。1989年在南京大学获博士学位。1991年起,先后在日本东北大学金属材料研究所、荷兰Utrecht大学Debye研究所、日本东京大学生产技术研究所和美国加州大学伯克利分校 (UC Berkeley)、麻省理工学院 (MIT)、英国剑桥大学 (Cambridge) 访问和合作研究。现任南京大学电子科学与工程学院长,电工电子实验教学中心主任。1998 年获霍英东青年教师基金,2000年入选国家教委跨世纪人才培养计划,2001年获全国宝钢教育基金优秀教师特等奖,2003年获国家自然科学基金委杰出青年基金。近年主要从事纳米电子、光电子材料、物理与器件等科研工作。主持和承担了二十多项国家自然科学基金、“973”和“863”等研究课题,包括主持国家重大科学研究计划“纳米研究”项目。
会议简介
The5th International Conference on 2D Materials and Technology was held in Suzhou, China, October 21-24, 2019. Prestigious scientists presented and stimulated discussions over some inherent topics of the ICON-2DMAT, including the Synthesis and Characterizations, Physics and Chemistry, Device applications, Theory and Modeling of 2D materials and heterostructures, etc. And, a special session related to the Vacuum Interconnected Nanotech Workstation (Nano-X) in Suzhou Institute of Nano-Tech and Nano-Bionics was be set up, which was dedicated to introduce a large scientific facility to 2D materials and technology. Specific forums and some other Symposia co-organized with preeminent academic publishers was be also established to foster academic and business networking.
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