办公室:B2大楼B210
Email:tangying@sztu.edu.cn
个人网址:https://scholar.google.com/citations?hl=en&user=bWDAhXQAAAAJ
2017.9-2022.6,理学博士,南京大学
2013.9-2017.6,工学学士,华南理工大学
2024.3-今,助理教授,深圳技术大学
2022.7- 2024.2,助理研究员,鹏城实验室
低维半导体光子学,时间分辨单粒子光谱,激子动力学,单光子源,异质集成。
[1] Tang Y.†, Yin C. †, Jing Q. †, Zhang C., Lu Z., Wang X.*, Yu Z.* and Xiao M.*, Quantized Exciton Motions and Fine Structures in Single Perovskite Nanowires. Nano Letters, 22(7): 2907-14 (2022).
[2] Lv B.†, Zhu T. †, Tang Y.†, Zhang C., Wang X.*, Shu D.* and Xiao M.*. Probing Permanent Dipole Moments and Removing Exciton Fine Structures in Single Perovskite Nanocrystals by an Electric Field. Physical Review Letters, 126, 197403 (2021). †共同第一作者
[3] Tang Y., Qin Q., Yang H., Feng S., Wang X.*, Zhang J.* and Xiao M.*. Electrical control of biexciton Auger recombination in single CdSe/CdS nanocrystals. Nanoscale, 14, 7674 – 7681 (2022).
[4] Zhang H†., Fu X†., Tang Y., Wang H., Zhang C., Yu W., Wang X.*, Zhang Y.* and Xiao M.*. Phase Segregation due to Ion Migration in All-inorganic Mixed-halide Perovskite Nanocrystals. Nature Communications, 10, 1-8 (2019).
[5] Zhang L., Yang H., Yu B., Tang Y., Zhang C.*, Wang X.*, Xiao M., Cui Y. and Zhang J.*. Low-Threshold Amplified Spontaneous Emission and Lasing from Thick-Shell CdSe/CdS Core/Shell Nanoplatelets Enabled by High-Temperature Growth. Advanced Optical Materials, 8, 1901615 (2020).
[6] Yang H., Zhang L., Tang Y., Xiang W., Wang X.*, Xiao M., Cui Y. and Zhang J.*.Enhanced Multiexciton Emission Property in Gradient Alloy Core/Shell CdZnSeS/ZnS Quantum Dots: Balance between Surface Passivation and Strain-induced Lattice Defect. The Journal of Physical Chemistry C, 125, 19, 10759–10767 (2021).
[7] Zhang L., Yang H., Tang Y., Xiang W., Wang C., Xu T., Wang X.*, Xiao M.* and Zhang J.*. High-Performance CdSe/CdS@ZnO Quantum Dots Enabled by ZnO Sol as Surface Ligands: A novel Strategy for Improved Optical Properties and Stability. Chemical Engineering Journal, 428, 131159 (2022).
唐颖,等,一种波导集成型光电探测器及其制备方法,专利公开号,CN 116885032 A
深圳市特聘岗位(C档)
南京大学人工微结构科学与技术协同创新中心(国家实验室 筹)优秀博士成果奖
2022-2025,国家自然科学基金委员会,面上项目,半导体钙钛矿纳米晶中载流子与晶格耦合的光学特性研究,参与
2020-2023,国家自然科学基金委员会,面上项目,单个钙钛矿纳米晶的光学特性研究,参与
2017-2022,科技部,国家重点研发计划,人工微结构中的量子、类量子效应及功能集成光子芯片 , 参与
2022-2024,鹏城实验室,重大攻关项目,参与