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陶立,东南大学青年首席教授、博导,材料科学与工程学院副院长。主要研究领域包括微纳精细制备、二维半导体材料与器件,微系统及纳米技术在大健康和物联网上的交叉应用。近5年主持国家重点研发计划课题、国自然重大研究计划培育项目、国家和省部级人才项目等科研任务6项。发表了60余篇有国际影响力的学术论文,包括Nature Nano.(一作引用1200次)、Chem. Soc. Rev.、Adv. Funct. Mat.、ACS Nano(10篇)等,WoS引用5000次,高被引论文7篇。授权的美国发明专利及中国发明专利3项。应邀主编英文专著1部,获批国家教执委教材1部。IEEE、MRS、EIPBN等著名国际学术会议上作邀请报告15余次(主旨报告2次),并担任程序委员或组织委员工作。Research(Science第一个合作期刊,WJCI国际排名第16)编委及副主编,Microelectronics Engineering中国区编辑,中国材料研究学会青年委员会理事。IEEE高级会员及纳米委员会常务委员,2020年和2022年IEEE纳米技术材料及器件国际会议(NMDC)两届大会主席,入选2023 IEEE NTC Distinguished Lecturer。
一、国家重点研发计划课题(2022-2026)
本课题针对我国在集成电路领域原始创新的重大战略需求,高质量和晶圆级尺寸的二维半导体单晶外延生长机理及带隙调控研究及多样性二维半导体材料库的建立。围绕上述关键问题,本课题聚焦材料-工艺-器件-集成四个层面的材料基础层,重点研究高质量n型和p型二维半导体单晶晶圆的外延生长,开发结构与性能一体化的高通量表征技术。
二、国家自然科学基金“后摩尔时代新器件基础研究”重大研究计划培育项目(2021-2024)
本项目聚焦以二维铋-硅为代表的二维半导体及其异质界面,进行高态密度、长自由程的二维材料制备及其异质界面构筑,研究载流子传输等界面物性并设计开发相关光电器件。本项目的研究可为后摩尔时代为高性能、低功耗、可穿戴微电子或光电器件的研发提供新思路和新可能。
三、国家海外高层次引进青年人才项目(2017-2020)
二维X烯材料及其微纳电子信息器件研究
主持的主要科研项目:
1. 国家重点研发计划课题(2022YFB4400101),在研
2. 国家自然科学基金重大研究计划培育项目(92164102),在研
3. 江苏省双创人才项目,结题;
4. 江苏省六大人才高峰B类(DZXX-011),结题
5. 中央高校合作重点项目,结题
6. 国家自然科学基金青年项目(51602051),结题;
7. 国家海外高层次引进人才项目,结题;
RepresentativePublications (WoS citations 4800, h-index 27)
1. Zhehan Wang, Xu Jing,Shengshun Duan, Chang Liu, Dingxuan Kang, Xiao Xu, Jiayi Chen, Yier Xia, BoChang, Chengdong Zhao, Beibei Zhu, Tao Xu, Huiwen Lin, Weibing Lu, Yuan Ren,Litao Sun, Jun Wu*, and Li Tao*,"2DPtSe2 Enabled Wireless Wearable Gas Monitoring Circuits with DistinctiveStrain-Enhanced Performance", ACS Nano, 10.1021/acsnano.3c01582
2. Hanliu Zhao, Yuxin Xue,Yu Zhao, Jiayi Chen, Bo Chang, Hao Huang, Tao Xu, Litao Sun, Yunfei Chen, JingjieSha*, Beibei Zhu* and Li Tao*.,"Large-area 2D Bismuth Antimonide with Enhanced Thermoelectric Propertyvia Multiscale Electron-Phonon Decoupling", Materials Horizons, 2023,10, 2053-2061
3. Qichao Chen, ChengjieLu, Boyu Ping, Guiyang Li, Jiayi Chen, ZhengMing Sun, Yuanjian Zhang, QiushiRuan*, Li Tao*, "Ahydroxyl-induced carbon nitride homojunction with functional surface forefficient photocatalytic production of H2O2", Applied Catalyst B., 2023,324, 122216
4. Yamei Ding, Ping He, ShaohanLi, Bo Chang, Shengli Zhang, Zhehan Wang, Jiayi Chen, Jing Yu; Sanxie Wu, HaiboZeng*, Li Tao*, "EfficientFull-Color Boron Nitride Quantum Dots for Thermostable Flexible Displays",ACSNano 15,14610, 2021
5. Christian Martella,Gabriele Faraoneb, Md Hasibul Alam, Deepyanti Taneja, Li Tao*,Guido Scavia, Emiliano Bonera, Carlo Grazianetti, Deji Akinwande*,Alessandro Molle*, “Disassembling silicene from nativesubstrate and transferring onto arbitrary target substrate”, AdvancedFunctional Materials,30, 2004546, 2020
6. Alessandro Molle, Carlo Grazianetti*, Li Tao*, Deepyanti Taneja, Md. Hasibul Alam, Deji Akinwande*,“Silicene, silicene derivatives, and their device applications”, ChemicalSociety Reviews,47, 6370-6387, 2018 [Citation 192]
7. Li Tao, E. Cinquanta, D. Chappe,C. Grazianetti, M. Fanciulli, A. Molle and D. Akinwande, “Silicene Field-EffectTransistors at Room Temperature”, Nature Nanotechnology, 10, 227-231,2015; [Citation 1223, 0.1% highlycited paper]
Edited Book
Li Tao and Deji Akinwande; Emerging 2D Materials & Devices for Internet ofThings, Micro-Nano Technology Book Series, Elsevier, ISBN: 9780128183861, 2020.
IssuedPatents
(1) Li Tao, Yamei Ding, Ping He, Jin Yu,Shaohan Li. Nanofabrication of full-color boron nitride quantum dots. ChinesePatent (ZL 2021-1-0600556.4)
(2) Li Tao, Zhengxiong Li, Qichao Chen,Jiayi Chen, Beibei Zhu. Nanofabrication of silver and graphene compositeflexible electrodes. Chinese Patent (ZL 2019-1-1105713.3)
(3) Deji Akinwande, Li Tao, Carlo Grazianetti,Alessandro Molle. Integration of air-sensitive two-dimensional materials onarbitrary substrates for the manufacturing of electronic devices. USPTO #10242884, March 26th,2019
InvitedConference Talks
1)“Strain-Regulated Flexible Molecular Sensors Enabled by Two Dimensional PtTe2” IEEE Integrated Circuits, Technologiesand Applications (ICTA), Nov.2022
2)“Energy-efficient Flexible AmmoniaSensors Enabled by Polypyrrole-Graphene” IEEE Nanotechnology, Materials and Devices Conference, Dec. 2021
3)“Thermoelectric and Photoelectric Effects of 2D Bismuth for FlexibleElectronics” IEEE Electronic Device Technology and Manufacturing Conference,April. 2021
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