莫新娣

作者:    时间:2022-09-05    点击数:

一、基本情况

莫新娣,女,广西贺州人,中共党员,理学硕士。主要研究方向:钙钛矿发光材料的光学性能研究。在NanoscaleJournal of Physics D: Applied PhysicsAdvanced Energy MaterialsPhysica E Low-dimensional Systems and NanostructuresJournal of Applied Physics等国内外权威期刊发表多篇论文。

联系地址:广西桂林市建干路12 桂林理工大学 williamhill体育入口注册(邮编:541004

电子邮箱:xindmo4089@163.com

二、个人主要经历

2013.9-2017.6  桂林理工大学 获理学学士学位

2017.9-2020.6  中南大学 获理学硕士学位(主要研究方向:钙钛矿光电探测器)

2020.7-2020.12 惠州锂威新能源科技有限公司

2021.1-2022.6  TCL集团科技有限公司(主要研究方向:量子点发光二极管的工艺研究)

2022.7-至今    桂林理工大学 williamhill体育入口注册

三、主要科研论文

[1]Xindi Mo, Xing Li, Guozhang Dai, D * Pei He, Jia Sun, Han Huang and Junliang Yang. All-inorganic perovskite CsPbBr3 microstructures growth via chemical vapor deposition for high-performance photodetectors[J]. Nanoscale, 2019, 11(44):21386-21393.

[2]Xindi Mo, Yang Xiang, Xing Li, Keqing Huang, Pei He, Guozhang Dai and Junliang Yang. Progress on growth of metal halide perovskites by vapor-phase synthesis and their applications[J]. Journal of Physics D: Applied Physics, 2022, 55(7):073001 (21pp).

[3]Xing Li, Xindi Mo, Yang Xiang, Guozhang Dai, Pei He, Mei Fang, Jia Sun, Han Huang and Junliang Yang. High-performance and flexible CsPbBr3 UV–vis photodetectors fabricated via chemical vapor deposition[J]. Journal of Physics D: Applied Physics, 2020, 53(35):354002.

[4]Keqing Huang, Yongyi Peng, Yaxin Gao, Jiao Shi, Hengyue Li, Xindi Mo, Han Huang, Yongli Gao, Liming Ding, Junliang Yang. High‐Performance Flexible Perovskite Solar Cells via Precise Control of Electron Transport Layer[J]. Advanced Energy Materials, 2019, 9(44).

[5]Xiaowu Wang, Guozhang Dai, Biao Liu, Haiyang Zou, Yang Chen, Xindi Mo, Xing Li, Jia Sun, Yufeng Liu, Yanping Liu, Junliang Yang. Broadband photodetectors based on topological insulator Bi2Se3 nanowire with enhanced performance by strain modulation effect[J]. Physica E Low-dimensional Systems and Nanostructures, 2019, 114:113620.

[6]Xiaowu Wang, Guozhang Dai, Yang Chen, Xindi Mo, Xing Li, Weihong Huang, Jia Sun, Junliang Yang. Piezo-phototronic enhanced photoresponsivity based on single CdTe nanowire photodetector[J]. Journal of Applied Physics, 2019, 125(9):094505.1-094505.7.

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