吴江滨

吴江滨,男,博士,研究员,博士生导师。

1990年生。2012年毕业于华中科技大学电子科学与技术系,2017年在中国科学院半导体研究所获得博士学位,2017-2023年在美国南加州大学任博士后,2023年加入中国科学院半导体研究所半导体超晶格国家重点实验室,任研究员,入选2022年度中科院青年高层次人才计划。

取得的重要科研成果及所获奖励:

致力于认知新型低维材料物性,提出基于此的新器件类型和工作机理,获得优异的性能:

1. 针对用于存算一体架构的RRAM(电阻式随机存储器)难以高精度编程的问题,采用原位导电通道观测技术,阐明了随机电报噪声对器件精度的影响机制,并提出噪声抑制的电气操作协议,实现多达2048个阻态的工业级RRAM阵列,使其向商用化应用迈进一大步。

2. 针对隧穿型忆阻器(铁电隧道结)无法兼顾硅工艺兼容性和大开关比的问题,研究了范德华异质结莫尔界面对层间耦合的影响,提出硅工艺兼容的半金属接触的范德华铁电隧道结,实现了高达107次方的开关比,为其在存算一体架构中的应用扫除一大障碍。

3. 针对感算一体架构对传感器可调控性的要求,研究了偏振、波长和磁性等调控元素对低维材料光响应的影响,开发了对偏振和波长敏感的中红外探测器,为其在感算一体架构的应用贡献新的思路。

以一作和通讯作者在 Nature, Nature Electronics, Nature Communications, Chemical Society Reviews, Advanced Materials (2), ACS Nano(4), Nano Letters (2)IEDM等一流期刊或微电子顶级会议发表文章20篇,截止20236月被引用超过6600次, H-index32(谷歌学术),申请和获批专利多项。获得2018年中科院优秀博士论文和2016年中科院院长奖(优秀奖)等。

主要研究领域方向:

1. 新型低维材料的光电特性及其调控

2. 基于新型低维材料的半导体器件

联系方式:

E-mail: jbwu@semi.ac.cn

个人网站:https://www.x-mol.com/groups/Wu_semi_cas

代表性论文或著作:

1. Mingyi Rao; Hao Tang; Jiangbin Wu; Wenhao Song; Max Zhang; Wenbo Yin; Ye Zhuo; Fatemeh Kiani; Benjamin Chen; Xiangqi Jiang; Hefei Liu; Hung-Yu Chen; Rivu Midya; Fan Ye; Hao Jiang; Zhongrui Wang; Mingche Wu; Miao Hu; Han Wang; Qiangfei Xia; Ning Ge; Ju Li; J. Joshua Yang; Thousands of conductance levels in memristors integrated on CMOS, Nature, 2023, 615 (7954), 823-829.

2. Jiangbin Wu; Hung-Yu Chen; Ning Yang; Jun Cao; Xiaodong Yan; Fanxin Liu; Qibin Sun; Xi Ling; Jing Guo; Han Wang; High tunnelling electroresistance in a ferroelectric van der Waals heterojunction via giant barrier height modulation, Nature Electronics, 2020, 3(8): 466-472.

3. Jiang-Bin Wu; Xin Zhang; Mari Ijas; Wen-Peng Han; Xiao-Fen Qiao; Xiao-Li Li; De-Sheng Jiang; Andrea C. Ferrari; Ping-Heng Tan; Resonant Raman spectroscopy of twisted multilayer graphene, Nature communications, 2014, 5: 5309.

4. Jiangbin Wu; Yu Yao; Miao-Ling Lin; Malte Rösner; Zhonghao Du; Kenji Watanabe; Takashi Taniguchi; Ping-Heng Tan; Stephan Haas; Han Wang; Spin‐Phonon Coupling in Ferromagnetic Monolayer Chromium Tribromide, Advanced Materials, 2022, 34: 2108506.

5. Jiangbin Wu; Xin Cong; Shanyuan Niu; Fanxin Liu; Huan Zhao; Zhonghao Du; Jayakanth Ravichandran; Ping-Heng Tan; Han Wang; Linear Dichroism Conversion in Quasi-1D Perovskite Chalcogenide, Advanced Materials, 2019, 31(33): 1902118.

6. Jiangbin Wu; Nan Wang; Ya-Ru Xie; Hefei Liu; Xinghao Huang; Xin Cong; Hung-Yu Chen; Jiahui Ma; Fanxin Liu; Hangbo Zhao; Jun Zhang; Ping-Heng Tan; Han Wang ; Polymer-like Inorganic Double Helical van der Waals Semiconductor, Nano Letters, 2022, 22(22): 9054-9061.

7. Jiang-Bin Wu; Zhi-Xin Hu; Xin Zhang; Wen-Peng Han; Yan Lu; Wei Shi; Xiao-Fen Qiao; Mari Ijias; Silvia Milana; Wei Ji; Andrea C. Ferrari; Ping-Heng Tan; Interface Coupling in Twisted Multilayer Graphene by Resonant Raman Spectroscopy of Layer Breathing Modes, ACS Nano, 2015,9(7): 7440-7449.

8. Jiang-Bin Wu; Miao-Ling Lin; Xin Cong; He-Nan Liu; Ping-Heng Tan; Raman spectroscopy of graphene-based materials and its applications in related devices, Chemical Society Reviews, 2018,47: 1822-1873.

9. Jiangbin Wu; Nan Wang; Xiaodong Yan; Han Wang; Emerging low-dimensional materials for mid-infrared detection, Nano Research, 2021, 14: 1863-1877.

10. Jiang-Bin Wu; Huan Wang; Xiao-Li Li; Hailin Peng; Ping-Heng Tan; Raman spectroscopic characterization of stacking configuration and interlayer coupling of twisted multilayer graphene grown by chemical vapor deposition, Carbon, 2016, 110: 225-231.

11. Jiang-Bin Wu; Huan Zhao; Yuanrui Li; Douglas Ohlberg; Wei Shi; Wei Wu; Han Wang; Ping-Heng Tan; Monolayer Molybdenum Disulfide Nanoribbons with High Optical Anisotropy, Advanced Optical Materials, 2016, 4(5): 756-762.