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中国计量大学材料与化学学院导师教师师资介绍简介-卫国英

本站小编 Free考研考试/2021-04-15

卫国英
sex
2
title
教授
department
材料与化学学院
college

college2

degree
博士
recruit":0,"firstDiscipline1
材料科学与工程
secondaryDiscipline1

firstDiscipline2
电子信息
secondaryDiscipline2

executive
材料与化学学院院长
officePhone
**
mobilePhone

emailAddress
guoyingwei@cjlu.edu.
businessAddress

individualResume
1999.9-2004.7 四川大学化学学院硕博士\r2004.7-今 中国计量学院教师\r2009.9-2010.7 厦门大学教育部高级访问****\r
researchTopic
1.国家自然科学基金面上项目:铝合金阳极氧化界面特性及疲劳性能影响机制(**),80万元,主持\r2.科技部国际科技合作项目:铝合金航空件环保阳极化技术及工艺标准联合研发(S2012ZR0220),350万元,主持\r3.国家自然科学基金:磁场调控电沉积合金磁性薄膜动力学过程及磁有序结构(**),第一主研;\r4.企业横向课题:环保电镀技术的研发,50万,负责人\r5.企业横向课题:电镀废水处理设备的研发,25万,负责人\r6.企业横向课题:无铬环保型航空铝合金件表面处理工艺研发,40万,负责人\r7.企业横向课题:铝合金零部件先进表面处理技术开发,10万元,负责人\r8.企业横向课题:电扶梯零部件表面技术开发与应用,20万元,负责人\r9.企业横向课题:固体废弃物循环利用技术研发及标准,50万元,负责人\r10.企业横向课题:卫浴用铝合金镁、硅、铁含量配比与挤压技术研发,30万元,负责人\r11.企业横向课题:PCB基高频软磁薄膜功率电感技术合作,45万元,负责人\r
awards
1、 CoPtW纳米复相合金永磁薄膜开发及应用研究,浙江省科学技术二等奖,浙江省人民政府,2007.3,排名第二。\r2、2007年12月,入选浙江省教育厅“浙江省中青年学科带头人”。\r3、2007年12月,入选浙江省“新世纪151人才工程”第三层次。\r4、2010年7月,获“浙江省优秀共产党员”荣誉称号。\r5、2009年9月,获得“浙江省暑期社会实践先进个人”荣誉称号。\r
researchProject
1.国家自然科学基金:电化学振荡诱导下合金电沉积磁性薄膜结构及性能的变异(**),负责人\r2.浙江省科技计划重点项目:涉及NdFeB表面合金电沉积速度分布的微观研究及应用(2006C21103),负责人\r3.国家自然科学基金面上项目:磁性多层膜的可控离子液体电沉积及层间磁耦合(** ),2012.1-2015.12,55万元主持\r4.浙江省自然科学基金:FePt磁性颗粒薄膜的可控离子液体电沉积,2011.1-2012.12,负责人;
publications
[1]Excellent Moisture Stability and Efficiency of Inverted All-Inorganic CsPbIBr2 Perovskite Solar Cells through Molecule Interface Engineering,ACS applied materials & interfaces,2020\r[2]Dy-doped CoNi Alloy Films Prepared by Electroplating Method,INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE,2020\r[3]Facile synthesis of various carbon nanotube/metal oxide nanocomposites with high quality,vacuum,2019\r[4]Study on Mechanical and Anticorrosion Performance of NiW Alloy Coatings Prepared by Induced Codeposition,INTERNATIONAL JOURNAL OF ELECTROCHEMICAL SCIENCE,2019\r[5]Aluminum alloy AA2024 anodized from the mixed acid system with enhanced mechanical properties,SURFACES AND INTERFACES,2018\r[6]Formation of 1D chain-like Fe3O4@C/Pt sandwich nanocomposites and their magnetically recyclable catalytic property, Applied Surface Science, 2019\r[7]FePt Thin Films Electrodeposited from Non-Aqueous Liquids,International Journal of Electrochemical Science,2012\r[8]Co–W films prepared from electroplatingbaths with different complexing agents, Surface Engineering, 2012\r[9]ELECTRODEPOSITION OF CoAg FILMS FROM EMIC ionic liquids, Surface Review & Letters, 2012\r[10]Electroless deposition of CoPtWP magnetic thin films,Thin Solid Films, 2010, \rThe effect of magnetic fields on the electroless deposition of Co-W-P film ,Surface & Coatings Technology,2010,\r[11] Co–Pt–W thin films electrodeposited from sulphate–gluconate baths,Materials Chemistry & Physics, 2009, 118: 57-62\r[12] Effect of organic additives on characterization of electrodeposited Co-W thin films, Applied Surface Science 2007, 253(18): 7461-7466\r[13] Influence of complexing agent on the electrodeposited Co–Pt–W magnetic thin films, Applied Surface Science 2008, 254(11):3425-3430\r[14] Preparation of magnetite nanoparticle by co-precipitation with addition of organic additives, Rare Metal Materials and Engineering;2008,37:355-357\r[15] The effect of magnetic fields on the electroless deposition of Co–W–P film, Surface & Coatings Technology, 2010, 204(16-17): 2669-2676\r[16] Preparation of Co-W-P magnetic thin films by electroless deposition, Surface Review & Letters, 2009, 16(4): 635-642\r
others

correlation
researchDirection1
环保表面技术;新材料计量
researchDirection2
材料服役评价与寿命预测
researchDirection3

researchDirection4
相关话题/中国计量大学 材料