研究队伍
 
 
 
 
 
 
 
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姓 名:
李泠
性    别:
职 务:
职    称:
研究员
学 历:
博士
通讯地址:
北京市朝阳区北土城西路3号
电 话:
010-82995581
邮政编码:
100029
传 真:
电子邮件:
lingli@ime.ac.cn

所属部门:
简历:

 

教育背景 

9/1997--7/2001: 电子科技大学, 本科

9/2001--7/2004: 中科院微电子所,硕士

12/2004--2/2007: PhD in Vienna University of Technology, Austria

 

工作简历

12/2007-7/2011: Senor researcher, Microelectronics research center in Europe (IMEC)

7/2011-3/2012: Research Professor in Kyung Hee University ,korea  

研究方向:

半导体器件载流子输运,器件物理与紧凑模型技术及电路设计。

学科类别:
电子科学技术
社会任职:
获奖及荣誉:
代表论著:
  

    1.  Ming Wang, Chong Bi, Ling Li, Shibing Long, Qi Liu, HangbingLv, Nianduan Lu, Pengxiao Sun, and Ming Liu, “Thermoelectric Seebeck effect in oxide-based resistive switching memory”, Nature Communications, 5:4598 (2014).

  2.  Ling Li, Nan Gao, Nianduan Lu, Ming Liu and Bassler, “Spin diffusion in disordered organic semiconductors”, Phys. Rev. B, 92, 214438 (2015).

  3.  Ling Li,Nianduan Lu, Ming Liu and Bassler, “General einstein relation model in disordered organic semiconductors under quasiequilibruim”, Phys. Rev. B, 90, 214107 (2014).

  4.  Pengxiao Sun, Nianduan Lu, Ling Li, Yingtao Li, Hong Wang, HangbingLv, Qi Liu, Shibing Long, Su Liu, and Ming Liu, “Thermal crosstalk in 3-dimensional RRAM crossbar arrays”, Scientific Reports, 5:13504(2015).

  5.  Nianduan Lu, Ling Li, and Ming Liu, “Universal carrier thermoelectric-transport model based on percolation theory in organic semiconductors”, Phys. Rev. B, 91195205 (2015).

  6.  Lingfei Wang, SonganPeng, ZhiweiZong, Ling Li, Wei Wang, GuangweiXu, Nianduan Lu, ZhuoyuJi, and Ming Liu, “A New Surface Potential Based Physical Compact Model for GFET in RF Applications”, IEDM Tech. Dig., 28.4: (2015).

  7.  ZhiweiZong, Ling Li, Jin Jang, Zhigang Li, Nianduan Lu, Liwei Shang, ZhuoyuJi, and Ming Liu, “A new surface potential-based compact model for a-IGZO TFTs in RFID applications”, IEDM Tech. Dig., 35.5: (2014).

承担科研项目情况:
  

    1.  863项目(2014AA032901):高密度存储与磁电子材料关键技术(2014-2016

  2.  973课题(2013CBA01604):石墨烯光电特性研究(2013--

  3.  中科院百人计划(2014-2017

  4.  自然基金委国家杰出青年基金(61725404)(2018-2022

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