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武汉理工大学材料科学与工程学院导师教师师资介绍简介-王洪恩

本站小编 Free考研考试/2021-07-26


姓 名
王洪恩
性 别

民 族

出生年月
1981.5

职 称
副研究员
职 务

联系电话
**

单位名称
材料复合新技术国家重点实验室
Email
hongenwang@whut.edu.cn

实验室网址


研究方向
1.通过溶胶凝胶、水热溶剂热、高温固相反应及化学气相沉积、磁控溅射沉积等方法研究新型无机多孔功能纳米材料的可控制备、结构(缺陷)调控、掺杂、梯度复合及形成机理机制等;
2.新型无机功能材料及无机-有机复合材料在电化学储能器件(锂离子/钠离子/钾离子电池、锂硫电池)、超级电容器及光/电催化以及太阳能电池中的基础/应用研究;
3.第一性原理密度泛函理论模拟用于无机材料的物化性质研究。

教育背景
2009.3-2012.4 香港城市大学 物理与材料科学系(现材料科学与工程系)及超金刚石与先进薄膜研究中心 博士
2004.9-2007.7 中南大学 化学化工学院 硕士
1999.9-2003.7 太原理工大学 材料学院 学士

工作经历
2012.6至今 武汉理工大学材料复合新技术国家重点实验室 副研究员,硕士生导师
2007.8-2019.2 中国铝业郑州研究院特种氧化铝研究所 技术开发
2003.8-2004.5 中国石油吉林石化公司丙烯酸酯车间 岗位操作

项目情况
1 国家自然科学基金青年项目
2 湖北省青年晨光计划

代表性学术
成果
1.SnS2/TiO2nanohybrids chemically bonded on nitrogen-doped graphene for lithium–sulfur batteries: synergy of vacancy defects and heterostructures, Nanoscale, 2018.
2.Carbon-bonded, oxygen-deficient TiO2nanotubes with hybridized phases for superior Na-ion storage, Chemical Engineering Journal, 2018.
3.Coherent nanoscale cobalt/cobalt oxides heterostructures embedded in porous carbon for oxygen reduction reaction, RSC Advances, 2018.
4.MoSe2nanosheets perpendicularly grown on graphene with Mo-C bonding for sodium-ion capacitors, Nano Energy, 2018.
5.rGO/SnS2/TiO2heterostructured composite with dual-confinement for enhanced lithium-ion storage, Journal of Materials Chemistry A, 2017.
6.Superior Pseudocapacitive Lithium-Ion Storage in Porous Vanadium Oxides@C Heterostructure Composite, ACS Applied Materials & Interfaces, 2017.
7.Walnut-like Porous Core/Shell TiO2with Hybridized Phases Enabling Fast and Stable Lithium Storage, ACS Applied Materials & Interfaces, 2017.(ESI高被引)
8.Impacts of surface or interface chemistry of ZnSe passivation layer on the performance of CdS/CdSe quantum dot sensitized solar cells, Nano Energy, 2017.
9.Macroporous ZnO/ZnS/CdS composite spheres as efficient and stable photocatalysts for solar-driven hydrogen generation, Journal of Materials Science, 2017.
10.Facile synthesis of well-shaped spinel LiNi0.5Mn1.5O4nanoparticles as cathode materials for lithium ion batteries, RSC Advances, 2016.




Dr. Hongen Wang
Address:122 Luoshi Road, Hongshan District, Wuhan, China
Email:hongenwang@whut.edu.cnTel: (86)**
EDUCATION
2009.3-2012.4

City University of Hong Kong PhD

2004.9-2007.7

Central South University MPhil

1999.9-2003.7

Taiyuan University of Technology Bachelor









WORK EXPERIENCE
2012.6-

Wuhan University of Technology associate professor

2007.8-2009.2


Zhengzhou Research Institute of CHALCO engineer

2003.8-2004.5

Jilin Petrochemical company, PetroChina operator





RESEARCH PROJECT
1
Chutian Scholar Program for young investigators

2
NSFC for young scholars

3
Hubei Youth Chenguang Plan




SELECTED PUBLICATION
1.SnS2/TiO2nanohybrids chemically bonded on nitrogen-doped graphene for lithium–sulfur batteries: synergy of vacancy defects and heterostructures, Nanoscale, 2018.2.Carbon-bonded, oxygen-deficient TiO2nanotubes with hybridized phases for superior Na-ion storage, Chemical Engineering Journal, 2018. 3.Coherent nanoscale cobalt/cobalt oxides heterostructures embedded in porous carbon for oxygen reduction reaction, RSC Advances, 2018.4.MoSe2nanosheets perpendicularly grown on graphene with Mo-C bonding for sodium-ion capacitors, Nano Energy, 2018.5.rGO/SnS2/TiO2heterostructured composite with dual-confinement for enhanced lithium-ion storage, Journal of Materials Chemistry A, 2017.
6.Superior Pseudocapacitive Lithium-Ion Storage in Porous Vanadium Oxides@C Heterostructure Composite, ACS Applied Materials & Interfaces, 2017.7.Walnut-like Porous Core/Shell TiO2with Hybridized Phases Enabling Fast and Stable Lithium Storage, ACS Applied Materials & Interfaces, 2017.(ESI高被引)8.Impacts of surface or interface chemistry of ZnSe passivation layer on the performance of CdS/CdSe quantum dot sensitized solar cells, Nano Energy, 2017.9.Macroporous ZnO/ZnS/CdS composite spheres as efficient and stable photocatalysts for solar-driven hydrogen generation, Journal of Materials Science, 2017.10.Facile synthesis of well-shaped spinel LiNi0.5Mn1.5O4nanoparticles as cathode materials for lithium ion batteries, RSC Advances, 2016.


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