职称:副教授
系所:化学工程系
办公室:校本部东区环化楼204室
电话:021-66137720
E-mail:hao-yan@shu.edu.cn
个人简介
1996年和1998年分别获哈尔滨工业大学环境工程专业学士学位和应用化学系工学硕士学位,2002年获日本东京都立大学化学工程工学博士学位。先后在日本农工大学、日本产业综合技术研究所(AIST)做博士后研究(JSPS),2006至今在亚星221net工作。在国际、国内核心刊物上发表论文10多篇,获国家发明专利3项,主持完成了2项国家自然科学基金项目,主编和参编教材4部,目前主要从事超临界流体、离子液体在绿色电化学技术中的应用研究。
学术经历
1996年 获哈尔滨工业大学环境工程专业学士学位
1998年 获哈尔滨工业大学应用化学系工学硕士学位。
2002年 获日本东京都立大学化学工程工学博士学位.
2002-2004年 日本农工大学博士研究员
2004-2006年 日本产业综合技术研究所(AIST),日本学术振兴会外国人特别研究员(JSPS)
2006年-至今,亚星221net,教师
研究方向
超临界CO2、离子液体、电化学、绿色化工
代表成果
[1] Nitrogen and phosphorus co-doped silkworm-cocoon-based self-activated porous carbon for high performance supercapacitors, J. Power Sources, 37 (2019) 227045.
[2] Porous carbon anchored titanium carbonitride for high-performance supercapacitor,Electrochimica Acta 304 (2019) 138
[3] Synergistic SupercriticalWater‘Wet’Activated Biomass Carbon as High Performances Electrode Materials for Supercapacitor, J. Electrochem. Soc.164,A1-A7 165 (2018), A2075-A2083
[4]"Remarkable Electrochemical Responses of Ferrocene/NaY Zeolite Composite modified Electrode Based on Hydrophobic Ionic Liquid",Electroanalysis (2009), 21(23), 2597–2601
[5] "Electrochemical synthesis of a polypyrrole thin film with supercritical carbon dioxide as a solvent",Langmuir(2005),21,12303-12308
[6]"The Effects of Dense Carbon Dioxide on Nickel Plating using Carbon Dioxide in Electroplating Solution’, Surface and Coatings Technology (2004) ,182 (2-3), 329-334
[7]"Electroplating in CO2-in-Water and Water-in-CO2Emulsions Using a Nickel Electroplating Solution with Anionic Fluorinated Surfactant", Surface and Coatings Technology(2004),187 (1),86-92
[8]天然 CXN 沸石分子筛水热稳定性研究I. 水热稳定性影响因素,化 学 学 报(2009 ),67 ( 18), 2060~2066
[9]天然 CXN 沸石分子筛水热稳定性研究II. 水蒸汽处理温度对铵型沸石物化性质的影响化 学 学 报(2009 ),67 ( 18), 2067~2073
[10] 超临界CO2高温高压合成高分子导电膜装置, CN101818358B
[11]一种高硅高水热稳定性中孔USSTI沸石及其制备方法,CN101759197B
[12]在高压环境下进行电镀工艺和电镀液开发试验的装置,ZL201310057756.5
科研项目
国家自然科学基金2项
教授课程
化工热力学,化工原理,超临界流体技术基础,化工技术经济
Yan Hao
Associate professor
Department of Chemical engineering.
Room 204, Huanhua Building
66137720(TEL)
66137725(FAX)
hao-yan @shu.edu.cn
Educational Background:
Dr.Yan received her B.S.(1996), M S.(1998) at Harbin Institute of Technology and Ph.D.(2002) in engineering at Tokyo Metropolitan University of Japan, respectively. She was worked as a post-doctoral fellow on Tokyo University of Agriculture and Technology and the National Institute of Advanced Industrial Science and Technology (AIST) of Japan(JSPS fellow) in turn, and since 2006 has been teacher of Department of Chemical engineering at Shanghai university. In recent years, she published more than 10 research papers in SCI journals and Chinese journals and 5 textbooks, and was granted about 3 invention patents in China. She is presently concerning on the application of supercritical carbon dioxide and ionic liquids in the green electrochemistry.
Academic Background:
2006,4-Present: Work as a teacher of Department of Chemical engineering in Shanghai University, Shanghai, China
2004,4~2006,3: Japan Society for Promotion Science (JSPS) Post-doctoral fellow in the National Institute of Advanced Industrial Science and Technology(AIST), Tsukuba, Japan
2002,9-2004,3: Post-doctoral fellow in Tokyo University of Agriculture and Technology, Tokyo,
Japan
1999.4~2002,10: Ph.D.in Chemical engineering, Tokyo Metropolitan University, Tokyo, Japan
1996.9~1998,6: M.S.in Applied Chemistry, Harbin Institute of Technology, Harbin, China
1992.9~1996,6: B.S.in Environmental Engineering, Harbin Institute of Technology, Harbin, China
Research Field:
Supercritical Fluid, Electrochemistry, Ionic Liquids, Green chemical engineering.
Journal Papers and Patents:
[1] Nitrogen and phosphorus co-doped silkworm-cocoon-based self-activated porous carbon for high performance supercapacitors, J. Power Sources,37 (2019)227045.
[2] Porous carbon anchored titanium carbonitride for high-performance supercapacitor, Electrochimica Acta 304(2019)138.
[3] Synergistic Supercritical Water 'Wet' Activated Biomass Carbon as High Performances Electrode Materials for Supercapacitor, J. Electrochem.Soc.164, A1-A7 165 (2018), A2075-A2083.
[4] Remarkable Electrochemical Responses of Ferrocene NaY Zeolite Composite modified Electrode Based on Hydrophobic Ionic Liquid", Electroanalysis(2009), 21(23), 2597-2601
[5] "Electrochemical synthesis of a polypyrrole thin film with supercritical carbon dioxide as a solvent", Langmuir (2005),21,12303-12308.
[6] "The Effects of Dense Carbon Dioxide on Nickel Plating using Carbon Dioxide in Electroplating Solution', Surface and Coatings Technology(2004), 182(2-3), 329-334.
[7] "Electroplating in CO2-in-Water and Water-in-CO2Emulsions Using a Nickel Electroplating Solution with Anionic Fluorinated Surfactant", Surface and Coatings Technology(2004),187(1), 86-92.
[8] "Hydrothermal Stability of Natural CXN Zeolite I. Factors of Influencing the Hydrothermal Stability", Acta Chimica Sinica (2009), 67(18), 2060-2066.
[9] "Hydrothermal Stability of Natural CXN Zeolite II. Influence of Steaming Temperature on the properties of NH-Type Zeolite", Acta Chimica Sinica (2009),67 (18),2067-2073.
[10] A device used for conducing polymer film synthesis with supercritical carbon dioxide under high temperature and high pressure, Chinese patent,CN101818358B.
[11] A high-silica mesopore USSTI zeolite with high hydrothermal stability and its preparation
method, Chinese patent, CN101759197B.
[12] A test device for development of electroplating process and the plating solution under high pressure, Chinese patent, ZL201310057756.5.
Research Projects:
1. Thermodynamic behavior of carbon dioxide expanded deep eutectic solvent-ionic liquids and its application for the electrodeposition preparation of metal films National Natural Science Foundation of China (Grant No.21176152),2012,01-2015,12.
2. Elctctropolymerization growth mechanism and shape-controlled preparation of conductive films in the supercritical CO2-IL biphasic systems,National Natural Science Foundation of China (Grant No.20604015), 2007, 01-2009,12.
Courses:
Chemical Engineering Thermodynamics, Principle of Chemical Engineering, Elementary Courses for Supercritical Fluid Technology,Chemical Techno-Economics
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