|
个人信息Personal Information
教授
博士生导师
硕士生导师
主要任职:化学学院副院长
性别:男
出生日期:1984-07-18
毕业院校:中科院大连化物所
学位:博士
所在单位:化学学院
学科:物理化学. 无机化学
联系方式:
电子邮箱:
扫描关注
- [1]窦兆林.Ma, Jiping,纪敏,王敏,Ji, Min; Ma, Jiping; Wang, Min.韩妮,郭连通,姜博,封增喜.Production of benzoic acid from wood lignin[J],CHEMICAL COMMUNICATIONS,2025
- [2]梁言.周宏儒,纪敏,王敏,Ji, Min; Wang, Min.赵园霞,梁晓玉,陈志伟.Creating hydrophobic nanopockets in metal-organic frameworks to promote hydrodeoxygenation of lignin derivatives under ambient conditions[J],CHEMICAL SCIENCE,2025
- [3]梁晓玉.王新葵,Ren, Yuanzheng,Xie, Hua,纪敏,王敏,Wang, Min; Wang, Xinkui.陈志伟,张欣欣,梁言,姜博.Construction of a Surface Hydroxyl Group on ZnIn2S4 Promotes Photocatalytic CO2 Reduction[J],JOURNAL OF PHYSICAL CHEMISTRY LETTERS,2025
- [4]梁晓玉.Feng, Pengcheng,纪敏,Dong, Mei,王新葵,王敏,Tao, Shengyang; Wang, Min; Wang, Xinkui.张欣欣,梁言,陶盛洋.Defects Induced in Situ Reconstruction of CdS with Oxygen-Tolerance Up to 23% in the Photocatalytic CO2 Reduction[J],ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,2025
- [5]陈苗苗.纪敏,王敏.薛寒,赵慧莉.Preparation of Magnetically Recyclable MIL-101-immobilized Frustrated Lewis Pairs for the Reduction of Aldehydes and Ketones[J],CHEMCATCHEM,2025,16(18)
- [6]阎慧欣.纪敏,王敏,王新葵,Wang, Min; Wang, Xinkui.王兴燕,梁晓玉,张欣欣,刘龙飞.Modulating the electronic interaction between Au and nitrogen-rich porous organic polymers for enhanced CO2 hydrogenation to formic acid[J],Catalysis Science and Technology,2024
- [7]陈志伟.周宏儒,Yang, Jingxuan,王敏.孔凡豪,窦兆林.Electrostatic Field Regulate Interfacial Hole Transfer for Photocatalytic Valorization of Biopolyols[J],Advanced Functional Materials,2024
- [8]孔凡豪.周宏儒,王敏.陈志伟,窦兆林.Light-driven ultrafast dual C-C cleavage and coupling of dihydroxyacetone into high-purity carbon monoxide and ethylene glycol[J],GREEN CHEMISTRY,2024,26(21):10859-10866
- [9]Zhang, Xinxin.王新葵,纪敏,王敏.孔凡豪,梁晓玉.The combination of Ni nanoparticles and single Ni atoms realizes co-electrolysis of CO2 and biomass-derived sugar and polyols[J],CHEMICAL ENGINEERING JOURNAL,2024,498
- [10]孔凡豪.周宏儒,王敏,Wang, Min.陈志伟,窦兆林.Light-driven ultrafast dual C-C cleavage and coupling of dihydroxyacetone into high-purity carbon monoxide and ethylene glycol[J],Green Chemistry,2024
