姓名:沈伟
二级学科:物理化学
职称:教授
电子邮箱:wshen@fudan.edu.cn
办公地点:江湾校区化学楼A2002
电话:86-21-31242401
课题组主页:www.indcatal.fudan.edu.cn
学习工作经历:
1984年9月至1988年7月复旦大学化学系获得理学学士学位
1988年9月至1991年7月复旦大学化学系获得理学硕士学位
2002年7月至2003年8月德国Konstanz大学访问学者
2003年9月至2007年9月复旦大学化学系获得理学博士学位
2005年9月至2010年1月加拿大Laval大学化学工程系获得化学工程博士学位
1991年7月至1994年5月复旦大学化学系工作,助教职称
1995年5月至1999年5月复旦大学化学系工作,讲师职称
1999年5月至2007年11月复旦大学化学系工作,副教授职称
2007年11月至今复旦大学化学系工作,教授职称
中国化工学会精细化工专业委员会委员
《石油化工》、《精细化工》编委
获奖情况:
曾获上海市化学化工学会吴蕴初奖。获国家科技进步奖一次,省部级技术发明奖和科技进步奖一等奖两次、二等奖两次。多次获上海市优秀发明一等奖、优秀产学研一等奖和优秀专利奖。
研究兴趣:
研究领域为催化材料和催化工程,以开发可实际应用的催化剂和催化反应为导向,进行多相催化应用基础研究。主要研究课题有:移动源和固定源尾气净化催化材料和反应工程,石油炼制催化剂开发,化石资源的高效转化和利用;生物质资源的高效转化和应用;多元醇空气氧化催化剂及生产工艺技术;精细化学品催化加氢催化剂和工艺等。
授课情况:国家级精品课程“物理化学II”;复旦大学精品课程“化学与人类”;“工业化学”;“化学工艺学”
代表性论文或专著:
1. Highlystable boron-modified hierarchical nanocrystalline ZSM-5 zeolite for themethanol to propylene reaction. Catalysis Science &Technology, 2014. 4(9): p.2891-2895.
2. Nafion-Resin-Modified Mesocellular Silica Foam Catalyst for5-Hydroxymethylfurfural Production from D-Fructose. Chemsuschem, 2013. 6(6): p. 1063-1069.
3. Catalytic decomposition of N2O over CuxCe1-xOy mixed oxides.Applied Catalysis B-Environmental, 2012. 125:p. 492-498.
4. Preparation of Co3O4 Catalysts by a Solid-state Reaction for TotalOxidation of Toluene. Acta Chimica Sinica, 2012. 70(1): p. 39-44.
5. Dehydrogenation inhibition on nano-Au/ZSM-5 catalyst: a novel route foranti-coking in methanol to propylene reaction. Chemical Communications,2012. 48(46): p. 5787-5789.
6. A facile route to synthesize endurable mesopore containing ZSM-5catalyst for methanol to propylene reaction. Chemical Communications, 2010.46(15): p. 2671-2673.
7. Alkylation of Isobutane/1-Butene on Methyl-Modified Nafion/SBA-16Materials. Industrial & Engineering Chemistry Research, 2010. 49(16): p. 7201-7209.
8. Ag microparticles embedded in Si nanowire arrays: a novel catalyst forgas-phase oxidation of high alcohol to aldehyde. Chemical Communications,2008(28): p. 3290-3292.
9. The influence of precursors on Rh/SBA-15 catalysts for N(2)Odecomposition. Applied Catalysis B-Environmental, 2008. 84(3-4): p. 490-496.
10. Gas-phase selective oxidation of alcohols: In situ electrolyticnano-silver/zeolite film/copper grid catalyst. Journal of Catalysis, 2006. 237(1): p. 94-101.
Name: SHEN Wei
Position:Professor
Academic division:PhysicalChemistry
Email:wshen@fudan.edu.cn
Office Location:Room A2002,Chemistry Building, Jiangwan Campus
Tel:86-21-31242401
Website (Research Group URL): www.indcatal.fudan.edu.cn
Biography:
Education:
2005 – 2010Laval University (Quebec city, Canada)
PhD of Chemical Engineering
2003 - 2007Fudan University
PhD of Science
2002 - 2003Kanstanz University (Germany)
Advanced study in PhysicsDepartment
1988 - 1991Fudan University, Shanghai; Master inScience
Major in PhysicalChemistry
1984 - 1988Fudan University, Shanghai; Bachelor inScience
Major in Physical Chemistry
Employment
Nov. 2007 -Professor, Chemistry Department ofFudan University
May 1999 - Nov. 2007Associate professor, Chemistry Department ofFudan University
July 1994 - May 1999Lecturer, Chemistry Department of FudanUniversity
Aug.1991 - July1994Assistant Professor, Chemistry Departmentof Fudan University
Prizes and awards:
1.China Petroleum and Chemical Industry Association “TechnologyInvention Award (first grade) ” (2007)
2.Shanghai Technology Invention Award (second grade)(2007)
3.Wu Yunchu Award (Shanghai Society of Chemistry and ChemicalIndustry, 2001)
4.Shanghai Invention Patent Award (2001)
5.Shanghai Excellent Invention Award (2001)
6.Shanghai “Science and Technology Progress Award(first grade)”(2000).
7.The third prize of state scientific and technological progress(1996)
Research interests:
Partialoxidation of alcohols on silver based catalysts
Alkylationof isobutane/n-butene on solid acid catalysts
Methanolto Propylene
Synthesisof biodiesel
Catalyticcombustion of VOC
Teaching activity:
PhysicalChemistry
IndustrialChemistry
Chemistryand Human
Key publications(请选择不超过10篇论文,最好配1-2幅图)
1. Highly stable boron-modifiedhierarchical nanocrystalline ZSM-5 zeolite for the methanol to propylenereaction. CatalysisScience & Technology, 2014. 4(9):p. 2891-2895.