中国科学院兰州化学物理研究所-凯发集团平台

研究队伍
姓名: 陈磊 性别:
学科类别: 物理化学/材料学 职务:
学历: 博士 职称: 研究员
电话: 0931-4968150 传真:
电子邮件: chenlei@lzb.ac.cn
通讯地址: 兰州市天水中路18号

简  历:

1989.09-1993.07北京化工大学应用化学专业获理学学士学位;

1993.07-2001.07甘肃省轻工业研究所工作;

2001.09-2006.12中科院兰州化学物理研究所攻读博士学位,获物理化学专业博士学位;

2007.1-至今  中科院兰州化学物理研究所先进润滑与防护材料研究发展中心工作;

研究方向:

特种胶黏剂及功能涂层材料

获奖及荣誉:

承担科研项目:

近年来,作为负责人和项目骨干,先后完成了10余项国家自然科学基金、国家高技术材料、和企业合作项目等课题,发展了多种新型功能涂层材料,在相关领域获得了成功应用。现承担国家自然科学基金、“十三五”装备预研项目、企业合作项目等多项研究课题。

代表论著:

1.influence of polyfluo-wax on the friction and wear behavior of polyimide/epoxy resin–molybdenumtribology transactionsvol. 59, no. 5, 889–895

2.disulfide bonded solid lubricant coating effects of nano-laf3on the friction and wear behaviors of ptfe-basedbonded solid lubricating coatings under different lubricationconditionsapplied surface science 382 (2016) 73–79

3.effects of phosphate binder on the lubricity and wear resistance ofgraphite coating at elevated temperaturessurface & coatings technology 315 (2017) 490–497

4.tribological behavior of polyimide/epoxyresin-polytetrafluoroethylene bonded solid lubricant coatings filledwith in situ-synthesized silver nanoparticlesprogress in organic coatings 106 (2017) 111–118

5.hierarchical nanosheet-based mos2/graphene nanobelts with highelectrochemical energy storage performancejournal of power sources 354 (2017) 1-9

6.facile synthesis of three dimensional mos2 porous film with highelectrochemical performancematerials letters 195 (2017) 147–150 7.preparation of cu–ni bimetallic nanoparticles surface-capped withdodecanethiol and their tribological properties as lubricant additiveparticuology

8.efficient synthesis of graphene oxide and the mechanisms of oxidation and exfoliationapplied surface science 416 (2017) 868–877

9.tribologiclal behavior of molybdenum disulfide bonded solid lubricating coatings cured with organosiloxane-modified phosphate binder, yulong,jia, lei chen, et al ,rsc advance

10.tribological properties of adaptive phosphate composite coatings with addition of silver and molybdenum disulfideapplied surface science 300 (2014) 111–116

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