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个人简介

丁维平 教授,博士生导师。1983年毕业于南京大学化学系,获得学士学位,1983~1986年在扬州大学任教,1992年在南京大学获得博士学位。1993年至1995年在南京大学物理系微结构实验室从事博士后研究,1996年进入南京大学化学化工学院工作,任副教授,1999初~2000年底在美国加州大学伯克利分校化工系任访问教授,2000年底返回南京大学化学化工学院,任南京大学化学系物理化学与材料系材料化学教授,兼任物理化学教研室主任。2004年整年在哈佛大学化学与化学生物学系任访问学者。2007年任中国石化上海石油化工研究院-南京大学催化材料与技术联合实验室主任,2008.7~2011.1 任南京大学化学化工学院副院长。学术兼职:中国能源学会理事,中国颗粒学会理事,中国催化委员会委员,江苏省化学化工学会物理化学专业委员会主任委员,第十四届全国催化学术会议秘书长。发表研究论文140余篇,国际专利6项,国内专利12项。获省部级科研成果一等奖1项,二等奖2项,2001年获华英文化教育基金会华英学者奖。

研究领域

一、先进材料的设计、合成、表征 研究课题性质: 化学化工、能源、新材料领域中有深刻应用前景的基础研究,特别是针对有现实产业需求,蕴含先进学术思想,理念创新,可带来现有产业技术升级换代的科学创造性基础研究。 材料类型: 人工纳米结构(纳米颗粒;纳米棒、线;纳米管) 孔结构材料的合成与修饰; 上述材料的复合。 特定表面结构催化材料,如特定外露晶面催化材料。 表面金属有机配合物材料等。 二、应用催化研究 应用:优先考虑催化用途;相关新材料;新型能源技术 催化: 基于传统固体酸材料改性修饰,着眼大宗化学品生产的催化剂技术创新 基于纳米团簇、纳米棒、纳米管、纳米复合结构、新型孔结构催化剂的选择氧化与加氢反应 追求类酶性能的超级催化剂 与国民经济产业发展密切相关的基础与应用催化反应课题 新能源技术: 固体氧化物燃料电池 新型储能材料研究 生物质利用中的催化技术创新

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Ding WP, Guo XF, Mo M, Zhu Y, Chen Y “Progress of the Study on the Synthesis and Catalytic Property of Noncrystalline Alloy Nanotubes” CHINESE JOURNAL OF CATALYSIS 31(8), 887-894, 2010 Xue NH, Liu N, Nie L, Yu Y, Gu M, Peng LM, Guo XF, Ding WP “1-Butene cracking to propene over P/HZSM-5: Effect of lanthanum” JOURNAL OF MOLECULAR CATALYSIS A-CHEMICAL 327(1-2), 12-19, 2010 Lv JG, Shen Y, Peng LM, Guo XF, Ding WP “Exclusively selective oxidation of toluene to benzaldehyde on ceria nanocubes by molecular oxygen” CHEMICAL COMMUNICATIONS 46(32), 5909-5911, 2010 Xie ZK, Liu ZC, Wang YD, Yang QH, Xu LY, Ding WP “An Overview of Recent Development in Composite Catalysts from Porous Materials for Various Reactions and Processes” INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES 11(5), 2152-2187, 2010 Liu ZQ, Chen ZX, Ding WP, Kang GJ, Li Z “A density functional study of pentacoordinated phosphorus species in ZSM-5 zeolite” JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM 948(1-3), 99-101, 2010 Ding SL, Liu N, Li XW, Peng LM, Guo XF, Ding WP “Silica Nanotubes and Their Assembly Assisted by Boric Acid to Hierachical Mesostructures” LANGMUIR 26(7), 4572-4575, 2010 Liu L, Qian JS, Li B, Cui YM, Zhou XF, Guo XF, Ding WP “Fabrication of rutile TiO2 tapered nanotubes with rectangular cross-sections via anisotropic corrosion route” CHEMICAL COMMUNICATIONS 46(14), 2402-2404,2010 Mo M, Han L, Lv JG, Zhu Y, Peng LM, Guo XF, Ding WP “Noncrystalline NiPB nanotubes for hydrogenation of p-chloronitrobenzene” CHEMICAL COMMUNICATIONS 46(13), 2268-2270, 2010 Cui YM, Liu L, Chen Y, Yu DH, Zhou XF, Xu NP, Ding WP “Assembly of NaTAO(3) porous microspheres via imperfect oriented attachment mechanism” SOLID STATE SCIENCES 12(2), 232-237, 2010 Liu N, Nie L, Xue NH, Dong HH, Peng LM, Guo XF, Ding WP “Catalytic Ammonia Synthesis over Mo Nitride/ZSM-5” CHEMCATCHEM 2(2), 167-174, 2010 Liu L, Li B, Yu DH, Cui YM, Zhou XF, Ding WP “Temperature-induced solid-phase oriented rearrangement route to the fabrication of NaNbO3 nanowires” CHEMICAL COMMUNICATIONS 46(3), 427-429, 2010 Wang L, Ma T, Sheng W, Guo XF, Ding WP, Chen Y “Preparation, Characterization, and Properties of Ferric Molybdate Nanotubes for Propene Epoxidation by Air” CHINESE JOURNAL OF CATALYSIS 30(8), 711-713, 2009 Liu H, Xue NH, Peng LM, Guo XF, Ding WP, Chen Y “The hydrophilic/hydrophobic effect of porous solid acid catalysts on mixed liquid phase reaction of esterification” CATALYSIS COMMUNICATIONS 10(13), 1734-1737, 2009 Guo XK, Ma QL, Guo XF, Ding WP, Chen Y “Biomimetic synthesis of aluminophosphate nanorolls induced by mixed organoamines” CHEMICAL COMMUNICATIONS 23, 3443-3445, 2009 Wang L, Peng B, Guo XF, Ding WP, Chen Y “Ferric molybdate nanotubes synthesized based on the Kirkendall effect and their catalytic property for propene epoxidation by air” CHEMICAL COMMUNICATIONS 12, 1565-1567, 2009 Xue NH, Nie L, Fang DM, Guo XF, Shen JY, Ding WP “Synergistic effects of tungsten and phosphorus on catalytic cracking of butene to propene over HZSM-5” Applied Catalysis A: General 352 (2009) 87–94 Liu H, Xue NH, Peng LM, Guo XF, Ding WP, Chen Y, The hydrophilic / hydrophobic effect of porous solid acid catalysts on mixed liquid phase reaction of esterification, CATALYSIS COMMUNICATIONS 2009, 10, 1734-1737 Xue NH, Guo XF, Ding WP, Chen Y, “Advances in Research of the Stability of Molecular Sieve Catalysts for Olefin Cracking” CHINESE JOURNAL OF CATALYSIS, 29(9), 866-872, 2008 Zhu Y, Guo XK, Mo M, Guo XF, Ding WP, Chen Y, “In situ synthesis of horizontally aligned metal-boron alloy nanotubes on a silicon substrate with liquid crystal template” NANOTECHNOLOGY 19(40), Article Number: 405602, OCT 8 2008 Zhou XF, Hu ZL, Fan YQ, Chen S, Ding WP, Xu NP, “Microspheric organization of multilayered ZnO nanosheets with hierarchically porous structures” JOURNAL OF PHYSICAL CHEMISTRY C 112(31), 11722-11728, AUG 7 2008 Yu DH, Wu C, Kong Y, Xue NH, Guo XF, Ding WP, “Structural and catalytic investigation of mesoporous iron phosphate” JOURNAL OF PHYSICAL CHEMISTRY C 111(39), 14394-14399, OCT 4 2007 Xue NH, Chen XK, Nie L, Guo XF, Ding WP, Chen Y, Gu M, Xie ZK “Understanding the enhancement of catalytic performance for olefin cracking: Hydrothermally stable acids in P/HZSM-5” JOURNAL OF CATALYSIS 248(1), 20-28, MAY 15 2007 Zhu Y, Guo XK, Shen YQ, Mo M, Guo XF, Ding WP, Chen Y, “Preparation and catalytic property of a non-crystalline alloy of iron-boron with one-dimensional nanostructures” NANOTECHNOLOGY 18(19), Article Number: 195601, MAY 16 2007 Yu DH, Qian JS, Xue NH, Zhang DY, Wang CY, Guo XF, Ding WP, Chen Y, “Mesoporous nanotubes of iron phosphate: Synthesis, characterization, and catalytic property” LANGMUIR 23(2), 382-386, JAN 16 2007 Zhou XF, Zhang DY, Zhu Y, Shen YQ, Guo XF, Ding WP, Chen Y, “Mechanistic investigations of PEG-directed assembly of one-dimensional ZnO nanostructures” JOURNAL OF PHYSICAL CHEMISTRY B 110(51), 25734-25739, DEC 28 2006 Zhu Y, Liu FP, Ding WP, Guo XF, Chen Y, “Noncrystalline metal-boron nanotubes: Synthesis, characterization, and catalytic-hydrogenation properties” ANGEWANDTE CHEMIE-INTERNATIONAL EDITION 45(43), 7211-7214, 2006 Yue L, Gao W, Zhang DY, Guo XF, Ding WP, Chen Y, “Colloids seeded deposition: Growth of titania nanotubes in solution” JOURNAL OF THE AMERICAN CHEMICAL SOCIETY 128(34), 11042-11043, AUG 30 2006

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