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昆明理工大学材料科学与工程学院导师教师师资介绍简介-方东

本站小编 Free考研考试/2021-11-07


方东




教授

博士

研究方向
无机纳米材料的制备及其在锂离子电池、光-电催化、环境金属离子处理与回收等领域应用;
金属基、高分子基复合材料;
蚕丝纳米纤维制备及其功能化应用等

通讯地址
云南省昆明市五华区学府路253号昆明理工大学材料大楼533

联系电话
**

电子邮箱
**@qq.com

个人简介
2001.9-2011.5月取得中南大学本科(化学工程与工艺专业)、硕、博士(电化学、无机材料方向)学位,硕-博导师:黄可龙教授;
其中:2009年-2010年以访问****身份国家公派到美国Texas A&M University航空航天系留学(合金方向),导师:Dimitris C Lagoudas教授、Zhiping Luo教授;
2011年-2017年武汉纺织大学材料学院,纤维材料制备及其功能应用研究(高分子方向);
2012年-2018年,武汉理工大学材料学博士后(高分子方向),导师:熊传溪教授。
2017年-现在昆明理工大学材料学院,云南省先进粉体材料创新团队成员;
Scientific Reports, ACS Applied Materials & Interfaces, Advanced Materials Interfaces, Journal of Material Chemistry AElectrochemistry CommunicationsActa MaterialiaApplied Physics Letters等发表SCI学术论文140余篇,其中以第一作者或通讯作者发表SCI论文70余篇;作为第一发明人授权中国发明专利9项。
现指导研究生11人,已毕业研究生5人,其中4人获得硕士研究生国家奖学金,1人获得纺织工业协会优秀学位论文。

在研项目主持
昆明理工大学高层次引进人才经费,2018.1-2025.12,在研;
云南省高层次人才引进计划经费,2020.1-2024.12,在研;
云南省重大专项,2020.1-2022.12,在研;
国家科技部重点研发计划,2021.7-2023.6,在研;
云南省昆明市专家工作站,2020.1-2022.12,在研。

科研成果
部分成果:
1、*Fang Dong、Li Licheng、Xu Weilin、Zheng Hongxing、Xu Jie、Jiang Ming、Liu Ruina、Jiang Xiaosong、Luo Zhiping、Xiong Chuanxi、Wang Qing,High capacity lithium ion battery anodes using Sn nanowires encapsulated Al2O3 tubes in carbon matrix, Advanced Materials Interfaces, 2016, 3, **.
2、Wang Chang、Cao Yunhe、Luo Zhiping、Li Guangzhong、Xu Weilin、Xiong Chuanxi、He Guoqiu、Wang Yingde、Li Shan、* Liu Hui、*Fang Dong,Flexible Potassium Vanadate Nanowires on Ti Fabric as a Binder-Free Cathode for High- Performance Advanced Lithium-Ion Battery,Chemical Engineering Journal, 2017, 307, 382-388.
3、Wang Chang、*Fang Dong、Wang Hongen、Cao Yunhe、Xu Weilin、Liu Xiaoqing、Li Guangzhong、Jiang Ming、Xiong Chuanxi, Nanowire arrays organized by ultrathin nanosheets with enhanced lithium storage properties, Scientific Reports, 2016, 6, 20826.
4、Dong Fang、Xueliu Xu、Rui Bao、Renzhuo Wan、Fan Yang、Jianhong Yi、Taofang Zeng、Olim Ruzimuradov, Layered Na5V12O32 nanowires with enhanced properties of removing Pb2+ in aqueous solution by chemical reaction, Journal of Environmental Chemical Engineering, 2021, 9, 104765,
5、Cao Yunhe、*Fang Dong、Liu Ruina、Jiang Ming、Zhang Hang、Li Guangzhong、Luo Zhiping、Liu xiaoqing、Xu Jie、Xu Weilin、Xiong Chuanxi, Three-dimensional porous iron vanadate nanowire arrays as a high- performance lithium-ion battery, ACS Applied Materials and Interfaces, 2016, 7(50), 27685-27693.
6、Fang Dong、Li Licheng、*Xu Weilin、Li Guangzhong、Li Gang、Wang Nanfang、Luo Zhiping、Xu Jie、Liu Li、Huang Chen Li、Liang Caowei、Ji Yongsheng, Self-assembled hairy ball-like Co3O4 nanostructures for lithium ion batteries,Journal of Materials Chemistry A, 2013, 1(42), 13203-13208.
7、Liang Chaowei、*Fang Dong、Cao Yunhe、Li Guangzhong、Luo Zhiping、Zhou Qunhua、Xiong Chuanxi、Xu Weilin,Polypyrrole-encapsulated vanadium pentoxide nanowires on a conductive substrate for electrode in aqueous rechargeable lithium battery,Journal of Colloid and Interface Science, 2015, 439, 69-75.
8、*Fang Dong、Li Xiujuan、Liu Hui、Xu Weilin、* Jiang Ming、* Li Wenbin、 Fan Xin,BiVO4-rGO with a novel structure on steel fabric used as high-performance photocatalysts, Scientific Reports, 2017, 7, 7979.
9、Chen Quan、 Yang Fan、 Wan Renzhuo、 *Fang Dong, Improving lumen maintenance by nanopore array dispersed quantum dots for on-chip light emitting diodes,Applied physics letters, 2017, 111, 243505(5pp).
10、Cao Yunhe、Luo Zhiping、Jiang Ming、Xu Weilin、Xiong Chuanxi、Li Shan、Liu Hui、*Fang Dong,Novel Lithium Vanadate Nanowires@Reduced Graphene Oxide Nanonanocomposites on Ti Foil with Super High Capacities for Lithium Ion Batteries,Journal of Colloid and Interface Science,2017, 498, 210-216.
11、Fang Dong、HuangKelong、Luo Zhiping、Wang Yue、Liu Suqin、Zhang Qi guang, Freestanding ZrO2 nanotube membranes made by anodic oxidation and effect of heat treatment on their morphology and crystalline structure, Journal of Materials Chemistry, 2011, 21, 4989-4994.
12、Fang Dong、Huang Kelong、Liu Suqin、Qin Dingyuan, High density copper nanowire arrays deposition inside ordered titania pores by electrodeposition, Electrochemi st ryCommunications, Electrochemistry Communications, 2009, 11, 901-904.




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