潘梅兰科研成果_潘梅兰专利信息_浙江工业大学环境学院潘梅兰科研信息|潘梅兰校企合作信息|潘梅兰联系方式
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潘梅兰科研成果

发布日期:2024-04-27 专利申请、商标注册、软件著作权、资质办理快速响应 微信:543646


潘梅兰
姓名 潘梅兰 性别
学校 浙江工业大学 部门 环境学院
学位 博士 学历 环境学院
职称 教授 联系方式 环境楼B408
邮箱 mlpan@zjut.edu.cn    
软件产品登记测试全国受理 软件著作权666元代写全部资料全国受理 实用新型专利1875代写全部资料全国受理
潘梅兰

个人简介 毕业于南开大学,曾任职于新加坡南洋理工大学,主要从事水体污染物控制与资源化/能源化研究。近五年以第一或通讯作者发表系列高水平学术论文,包括Environmental Science & Technology 、 Advanced Functional Materials 、Nano Energy等环境材料专业top期刊,申请并授权多项国家发明专利,主持并参与国家重大研发专项在内的研究项目。 教学与课程 《环境科学与工程化学》 育人成果 科研项目 1.运河青年学者项目启动经费,2021-2025,80万2.基于压电复合材料表面微区电场调控对重金属络合废水的处理及机理研究,2022.01-2024.12,国家自然科学基金,30万,项目负责人 科研成果 [1]     Meilan Pan, Subiao Liu, Bingjun Pan, Jia Wei Chew. Directionally Tailoring the Macroscopic Polarization of Piezocatalysis for Hollow Zinc Sulfide on Dual-doped Graphene. Nano Energy 2021, 88, 106312[2]     Du Chen, Hui Yu, Meilan Pan, Bingjun Pan. Hydrogen Bonding-orientated Selectivity of Phosphate Adsorption by Imine-functionalized Adsorbent. Chemical Engineering Journal https://doi.org/10.1016/j.cej.2021.133690[3]     Meilan Pan, Subiao Liu, Jia Wei Chew. Realizing the Intrinsic Electrochemical Activity of Acidic N-doped Graphene through 1-Pyrenesulfonic Acid Bridges. Advanced Functional Materials 2020,2001237. [4]     Meilan Pan, Yong Zen Tan, Jia Wei Chew. Superior membrane distillation by induction heating of 3D rGO/Nafion/Ni foam for water treatment. Journal of Membrane Science 2020, 602, 118609.[5]     Meilan Pan, Jiong Wang, Guandao Gao, Jia Wei Chew. Incorporation of Single Cobalt Active Sites onto N-doped Graphene for Superior Conductive Membranes in Electrochemical Filtration. Journal of Membrane Science 2020, 602, 117966. [6]     Meilan Pan, Subiao Liu, Jia Wei Chew. Unlocking the High Redox Activity of MoS2 on Dual-doped Graphene as a Superior Piezocatalyst. Nano Energy, 2020, 68, 104366. [7]     Meilan Pan, Chen Zhang, Jiong Wang, Jia Wei Chew, Guandao Gao, Bingcai Pan. Multifunctional Piezoelectric Heterostructure of BaTiO3@ Graphene: Decomplexation of Cu-EDTA and Recovery of Cu, Environmental Science & Technology 2019, 53, 8342-8351. [8]     Meilan Pan, Jiong Wang, Ming Hua, Guandao Gao, Xin Wang, Jia Wei Chew, Augmentation of hydroxyl groups as electrocatalytic active sites in porous graphene, Carbon, 2019, 154, 384-390. [9]     Meilan Pan, Chao Shan, Shengqi Guo, Bingcai Pan, Guandao Gao. Enhanced Photochemical/electrochemical Performance of         Graphene Benefited from Morphological Change as Substrate of Typical Composites. Advanced Materials Interfaces 2019, 5, 1800035. [10]  Meilan Pan, Zhihao Chen, Chao Shan, Yanfeng Wang, Bingcai Pan, Guandao Gao. Photochemical Activation of Seemingly Inert SO42- Specific Water Environments. Chemosphere 2019, 214, 399-407.[11]  Meilan Pan, Chao Shan, Xiaolin Zhang, Chanyuan Zhu, Gaoguandao, Bingcai Pan. Environmentally Friendly in situ Regeneration of Graphene Aerogel as a Model Conductive Adsorbent. Environmental Science & Technology 2018, 52 (2), 739-746.[12]  Meilan Pan, Yanyang Zhang, Chao Shan, Xiaolin Zhang, Guandao Gao, and Bing-Cai Pan. Flat Graphene Enhanced Electron Transfer Involved in Redox Reactions. Environmental Science & Technology 2017, 51(15) 8597-8605. [13]  Meilan Pan, Haijun Zhang, Guandao Gao, Lu Liu, and Wei  Chen. Facet-dependent Catalytic Activity of Nanosheets-Assembled BiOI Microspheres in Degradation of Bisphenol A. Environmental Science & Technology 2015, 10, 6240-6248. [14]  Guandao Gao, Meilan Pan and Chad D. Vecitis. Effect of Oxidation Approach on Carbon Nanotube Surface Functional Groups and Electrooxidative Filtration Performance. Journal of Materials Chemistry A 2015, 3, 7575-7582. [15]  Meilan Pan, Jie Ding, Guandao Gao, Lin Duan, Lu liu, Wei Chen. Photochemical Activity and Mechanism of Aqueous Fe3+ in Phototransformation of Bisphenol A. Chemosphere 2017, 167, 353-359. [16]  Ju Tian, Meilan Pan, Yunqiao Ma, Jia Wei Chew, Effect of membrane fouling on chiral separation, Journal of Membrane Science 2020, 593, 117352.[17]  Sheng-qi Guo, Liyan Wang, Yantao Chen, Meilan Pan, Edison Huixiang Ang, Zhi-hao Yuan, Unraveling the Mechanisms of the Alloying Effect on Improving the Photocatalytic Nitrate Reduction Activity of Bismuth Oxyhalide Nanosheets, ChemPhotoChem, doi.org/10.1002/cptc.201900217. 社会服务

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