王旭东
姓名:王旭东
所在系所:表面科学与技术研究所
职称:副教授
通信地址:海淀区学院路30号北京科技大学新材料技术研究院
邮编:100083
办公地点:腐蚀楼223
办公电话:010-62332548
邮箱:xdwang@ustb.edu.cn
个人简介
研究方向
科研业绩
人才计划——
(1)北京市科技新星。
科研项目——
(1)国家重点研发计划重点专项:材料环境失效过程的多因素耦合加速模拟实验技术,2017YFB0702102-01,参加。
(2)国家重点研发计划重点专项:镁合金产品残余应力消减与表面保护,2016YFB0301105-02,参加。
(3)北京市科技新星计划:北京市科技新星-非晶纳米晶复合涂层的制备及其极端条件下的性能研究,2008A029,主持。
(4)高等学校科技创新工程重大项目培育资金项目:教育部属高校重大科技基础设施规划建设与运行管理研究,参加。
(5)国家自然科学基金:空间环境下氧化锌热控涂层的电子与质子辐照诱发缺陷,50502006,主持。
(6)航天项目:载人月球车材料防护技术研究,主持。
科研成果——
主要代表论文:
1. Gu P, Wang X, Li T, et al. Solvothermal synthesis and growth mechanism of asymmetric ZnO hierarchical structures in diethylene glycol with ammonia solution[J]. Crystal Research and Technology, 2013, 48(11): 989-995.
2. Gu P, Wang X, Li T, et al. Synthesis, characterization and photoluminescence of ZnO spindles by polyvinylpyrrolidone-assisted low-temperature wet-chemistry process[J]. Journal of Crystal Growth, 2012, 338(1): 162-165.
3. Gu P, Wang X, Li T, et al. Investigation of defects in N-doped ZnO powders prepared by a facile solvothermal method and their UV photocatalytic properties[J]. Materials Research Bulletin, 2013, 48(11): 4699-4703.
4. Gu P F, Wang X D, Wang X K, et al. Preparation of 1D or 3D Nano ZnO Crystals in High-Viscosity Solvent[100]//Materials Science Forum. Trans Tech Publications, 2014, 789: 36-43.
5. Liu J, Wang X, Tian Z, et al. Effect of copper content on the properties of electroless Ni–Cu–P coatings prepared on magnesium alloys[J]. Applied Surface Science, 2015, 356: 289-293.
6. Song Z, Wang X, Cai Y, et al. Effect of adding K3[Fe(C2O4)3] on the characteristics of the magnesium alloy micro-arc oxidation coating[J]. Journal of Dispersion Science and Technology, 2019: 1-7.
7. Wang X D, He S Y, Yang D Z, et al. Space Radiation Damage in ZnO Induced by Subthreshold Electrons: Defect Identity and Optical Degradation[J]. Radiation research, 2011, 176(2): 264-268.
8. Song Z, Wang X, Li R, et al. Black ceramic coatings prepared in phosphate-based electrolyte containing Fe3+ complexes on ZK61M Mg alloy by micro-arc oxidation[J]. Surface and Interface Analysis, 2019, 51(5): 552-557.
9. Liu Q L, Wang X D, Wang X K, et al. Study of high emittance chemical conversion coatings for magnesium alloys[J]. Surface Engineering, 2014, 30(1): 48-52.
10. Михайлов М М, Ван С, Ли Ч, et al. Влияние плотности потока, потока и энергии электронов на изменение оптических свойств покрытия ZnO+ K2SiO3[J]. Известия высших учебных заведений. Физика, 2000, 43(9): 25-32.