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吴沁柯

副教授

电话:

邮箱:743795637@qq.com

个人简历

教学

研究领域

研究成果

奖励荣誉

概况

其研究方向为二维材料的可控制备、缺陷工程与界面调控,重点聚焦过渡金属硫族化合物(TMDC)半导体。课题组研发化学气相沉积(CVD)工艺,实现晶圆级超低缺陷二维薄膜与异质结构生长,面向电子与光电器件应用开展激子行为与载流子动力学研究。曾任职于清华 - 伯克利深圳学院,于成均馆大学取得博士学位。累计发表论文 30 余篇,拥有多项中美发明专利。

教育经验

2012.09 – 2019.02 韩国成均馆大学 纳米科学与技术 硕博连读
2008.09 – 2012.06 大连理工大学 材料与机械工程 工学学士

工作经验

2025.04 – 至今 湖北工业大学 低维量子材料中心 副教授
加入李永熙(Young Hee Lee)院士课题组,主要从事二维量子材料的可控制备及其器件应用研究。
2022.12 – 2025.03 清华 - 伯克利深圳学院 低维材料与器件实验室 助理研究员
2019.05 – 2022.11 清华 - 伯克利深圳学院 低维材料与器件实验室 博士后研究员



二维(2D)材料的可控制备、缺陷工程与界面调控,重点聚焦过渡金属硫族化合物(TMDC)半导体。


[1] Qinke Wu, Liqiong He, Dan Wang, Huiyu Nong, Jingwei Wang, Zhengyang Cai, Shilong Zhao, Rongxu Zheng, Shen Lai, Rongjie Zhang, Qingliang Feng, Bilu Liu. Resolidified Chalcogen Assisted Growth of Bilayer Semiconductors with Controlled Stacking Orders (Small 2023, 2305506, https://doi.org/10.1002/smll.202305506).
[2] Qinke Wu, Huiyu Nong, Rongxu Zheng, Rongjie Zhang, Jingwei Wang, Liusi Yang, Bilu Liu. Resolidified Chalcogen Precursors for High-Quality 2D Semiconductor Growth, Angewandte Chemie 2023, 62, e202301501. (Back Cover)
[3] Qinke Wu, Jialiang Zhang, Lei Tang, Usman Khan, Huiyu Nong, Shilong Zhao, Yujie Sun, Rongxu Zheng, Rongjie Zhang, Jingwei Wang, Junyang Tan, Qiangmin Yu, Liqiong He, Shisheng Li, Xiaolong Zou, Hui-ming Cheng, Bilu Liu*. Iodine-assisted Ultrafast Growth of High-quality Monolayer MoS2 with Sulfur-terminated Edges, National Science Open 2023, 2: 20230009.
[4] Qinke Wu, Yuting Luo, Ruikuan Xie, Huiyu Nong, Zhengyang Cai, Lei Tang, Junyang Tan, Simin Feng, Shilong Zhao, Qiangmin Yu, Junhao Lin, Guoliang Chai, Bilu Liu. Space-Confined One-Step Growth of MoO2/MoS2 Vertical Heterostructures for Superior Hydrogen Evolution in Alkaline Electrolytes, Small 2022, 18, 2201051.
[5] Qinke Wu, Young Jae Song. The Environmental Stability of Large-size and Single-crystalline Antimony Flakes Grown by Chemical Vapor Deposition on SiO2 Substrates, Chemical Communications 2018, 54 (69), 9671-9674.
[6] Qinke Wu, Joohyun Lee, Jia Sun, Young Jae Song. In situ Direct Growth of Graphene/Hexagonal Boron Nitride Heterostructure on SiO2 Substrate without Metal Catalyst. Carbon 2018, 138, 76-80
[7] Qinke Wu, Tae Hwan Jeong, Sanwoo Park and Young Jae Song. Synthesisof large area graphitic carbon nitride nanosheet by chemical vapor deposition, Journal of Alloys and Compounds 2022, 900, 163310.
[8] Qinke Wu, Sun Jia, Hyun Min, Tae Hwan Jeong, and Young Jae Song. Two-dimensional semiconducting and single-crystalline antimony trioxide directly-grown on monolayer graphene, Chemical Communications 2019, 55 (17), 2473-2476.
[9] Qinke Wu, Winadda Wongwiriyapan, Sungjoo Lee, Young Hee Lee, and Young Jae Song. Review: In situ chemical vapor deposition of graphene and hexagonal boron nitride heterostructures. Current applied Physics 2016, 16 (9), 1175-1191.
[10] Qinke Wu, Ji-Hoon Park, Sangwoo Park, Seong Jun Jung, Hwansoo Suh, Noejung Park, Winadda Wongwiriyapan, Sungjoo Lee, Young Hee Lee, and Young Jae Song. Single Crystalline Film of Hexagonal Boron Nitride Atomic Monolayer by Controlling Nucleation Seeds and Domains, Scientific Reports 2015, 5 (1), 16159.
[11] Qinke Wu, Sung Kyu Jang, Sangwoo Park, Seong Jun Jung,Hwansoo Suh, Young Hee Lee, Sungjoo Lee, Young Jae Song. In situ Synthesis of Large Area Boron Nitride/Graphene Monolayer/Boron Nitride Film by Chemical Vapor Deposition, Nanoscale 2015, 7 (17), 7574-7579.
[12] Qinke Wu, Seong Jun Jung, Sung Kyu Jang, Joohyun Lee, Insu Jeon, Hwansoo Suh, Yong Ho Kim, Young Hee Lee, Sungjoo Lee, Young Jae Song. The Controllable Poly-crystalline Bilayer and multilayer Graphene Film Growth by Reciprocal Chemical Vapor Deposition. Nanoscale 2015, 7 (23), 10357-10361.


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