教授

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朱卫华



朱卫华

教授、博士生导师

镇江市化学化工学会理事长

实验室与设备管理处副处长

联系方式:sayman@ujs.edu.cn



个人履历

朱卫华,教授,博导,镇江市化学化工学会理事长,中国化学会卟啉与酞菁专业委员会副主任委员。长期从事配位化学、催化化学及环境污染物化学研究,共发表SCI论文150余篇,其中第一/通讯作者论文120余篇;授权中国发明专利(第一发明人)10余。主持或参与国家自然科学基金4项、省部级项目6项;科研成果获得省部级二等奖3项。


研究领域

卟啉化学、催化化学及环境污染物化学


研究方向

1. 卟啉电化学

2. 小分子电化学催化活化

3. 表界面及单原子催化

获奖与荣誉

1. 针刺治疗时细胞内钙、镁作用机制,江苏大学科技进步一等奖、镇江市科技进步三等奖(排名第三), 2002年

2. 环境中镉、汞、铅的毒性和新型螯合剂对镉的解毒作用研究,镇江市科技进步三等奖,(排名第五), 2003年。

3. 二硫代氨基甲酸盐对镍、镉的解毒作用研究,镇江市科技进步一等奖(排名第五), 2006年

4. 江苏大学优秀教师,2004年

5. 环境有机物可见光催化降解关键技术研究及其应用,中国石油和化学工业联合会科技进步二等奖,排名第五,2010年


2019年至今的部分论文

1. Xiaohong Zhang, Xifeng Zhang, Weihua Zhu* and Xu Liang

Boosting Electrocatalyzed Hydrogen Evolutions with Electropolymerized Thiophene Substituted CoIIICorroles

Dalton Trans. 2022, DOI: 10.1039/D2DT00515H

Selected as the Front Cover

2. Surface Functionalized Gold Electrode by Axial Ligand Exchanged CoIIIcorroles for Accelerating Electrocatalyzed Hydrogen Evolutions

Isaac K. Attatsi, Weihua Zhu* and Xu Liang

Int. J. Hydrogen Energy 2022, DOI: 10.1016/j.ijhydene.2022.03.059

3. Xinyi Dong, Tingting Gu, Minzhi Li, Weihua Zhu* and Xu Liang

An Axial 4-Mercaptopyridine Substituted IrIIItriarylcorrole Self-Assembled Monolayers on a Gold Electrode for Efficient Hydrogen Evolutions and Oxidation Reductions

Inorg Chim Acta. 2022, 535, 120841

4. CoIIIcorrole: Versatile Synthetic Methods and Wide Range of Applications

Tingting Gu, Zhen Zhang, Shengyu Zhang, Weihua Zhu*, Xu Liang

J. Inclusion Phenomena and Macrocyclic Chemistry 2022, DOI: DOI: 10.1007/s10847-021-01127-w

5. Isaac Kwaku Attatsi, Weihua Zhu, Minzhi Li, Sameul A. Nudur, and Xu Liang

Monolayer Cobalt(II)phthalocyanine Functioanllized Gold Electrodes for Enhanced Oxygen Reduction Reactions.

J. Coordination Chemistry 2022, DOI: 10.1080/00958972.2022.2034149

6. Tingting Gu, Isaac Kwaku Attatsi, Weihua Zhu*, Minzhi Li, Sameul A. Nudur, and Xu Liang

Tuning the Enhanced Electrocatalytic Hydrogen Evolutions of Co(II)phthalocyanine through Axially Coordinated to Pyridine-Pyrene

Inorg. Chim. Acta 2022, 530, 120696

7. Weihua Zhu*, Lihua Li, Yu Wang, John Mack, Somila Dingiswayo, Tebello Nyokong and Xu Liang

Structural Modification of RhIIItriarylcorroles for Enhanced Electrocatalyzed Hydrogen Evolution Reactions

Dyes and Pigments 2022, 199, 11004

8. Yan Fan, Zhiming Zeng, Hui Shu, Mingbo Zhou, Ling Xu, Yutao, Rao, Tingting Gu, Xu Liang, Weihua Zhu, and Jianxin Song

Two- and three-dimensional β, β’-N-heterocycle fused porphyrins: concise construction, singlet oxygen production and electrocatalytic hydrogen evolution reaction

Org. Chem. Front. 2021, 8, 6080–6088

9. Xu Liang, Syed Najeeb-Uz-Zaman Haider, Yingjie Niu, Jianfeng Li, Weihua Zhu*

Chiral imide-Bonded Porphyrin-Perylene-Porphyrin Hybrids: The Obvious Extension of Optical Response in the Visible Region

Dyes and Pigments 2021, 196; 109767

10. Bo Fu, Yingjie Niu, Xiaoxiao Yu, Xianying Fang, John Mack, Somila Dingiswayo, Tebello Nyokong, Weihua Zhu*, Xu Liang and Haijun Xu

Borneol-triarylcorrole hybrids with chiral-optical response and anticancer behaviours

Dyes and Pigments 2021, 195, 109699

11. Yingjie Niu, Weihua Zhu, John Mack, Nadine Dubazanac, Tebello Nyokong, Bo Fu, Haijun Xu and Xu Liang

Push–pull type Co(III)corroles: Synthesis, electronic structure and electrochemical catalysis

J. Porphyrin and Phthalocyanine 2021, 25: 289–297

12. Xifeng Zhang, Wenwu Guo, Weihua Zhu* and Xu Liang

meso-Expanded Co(III)corrole through Suzuki-Miyarura Couplings: Synthesis and their tunable Electrocatalytic Hydrogen Evolutions and Oxygen Reductions

J. Porphyrin and Phthalocyanine 2021, 25: 273–281

13. Bo Fu, Xinyi Dong, Xiaoxiao Yu, Zhen Zhang, Lei Sun, Weihua Zhu*, Xu Liang and Haijun Xu

meso-Borneol- and meso-Carbazole-Substituted Porphyrins: Multifunctional Chromophores with Tunable Electronic Structures and Antitumor Activities

New J. Chem. 2021, 45, 2141-2146

14. Bo Fu, Zhen Zhang, Xiaoxiao Yu, Xiyi Dong, Xianying Fang, Weihua Zhu*, Xu Liang and Haijun Xu

C2 Symmetric Borneol-Porphyrin Hybrids: Synthesis, Characterization, Electronic Structure and Their Anti-Cancer Behaviors

Dyes and Pigments 2021, 184, 108837

15. Fei Xia, Weihua Zhu*, and Xu Liang

(tBu)4M(II)Phthalocyanines (M = Co(II), Ni(II), Cu(II)) Revisited: Self-assembled Nanosheets for Enhanced Electrochemically Catalyzed Hydrogen Evolutions

New J. Chem. 2020, 44, 21108


16. Mingfeng Qin, Zhen Zhang, Weihua Zhu*, John Mack, Rodah C. Soy, Tebello Nyokong and Xu Liang

Modulation of the Optical Properties of Chiral Porphyrin Dimers by Introducing Bridged Chiral Amide-Bonds

Journal of Porphyrins and Phthalocyanines, 2020, 25(25): 37-46

17. Li Qizhao, Chengjie Li, Gleb Baryshnikov, Yubin Ding, Chengxi Zhao, Tingting Gu, Feng Sha, Xu Liang, Weihua Zhu, Xin-Yan Wu, Hans Ågren, Jonathan Sessler, and Yongshu Xie

Twisted-Planar-Twisted Expanded Porphyrinoid Dimer: A Rudimentary Reaction-based Methanol Indicator

Nature Communications 2020, 11, 5289

18. Weihua Zhu*, Honglin Zhang, Aijian Wang, and Xu Liang

Efficient Nonlinear-Optical Behaviors of Chiral-Amide-Bonded Porphyrin Noncovalent Functionalized MWCNTs by Terminated Pyrene Units

New J. Chem., 2020, 44, 14890-14895

19. Song, Jianxin; Li, Yuanyuan; Zhou, Mingbo; Xu, Ling; Zhou, Bixiang; Rao, Yutao; Nie, Haigen; Gu, Tingting; Zhou, Jie; Liang, Xu; Yin, Bangshao; Zhu, Weihua; Osuka, Atsuhiro

Simultaneous Implementation of N-Heterocycle-Fused Bridge and Modified Pyrrole Unit on Ni(II) Porphyrin Dimers

Org. Lett. 2020, 22, 15, 6001-6005

20. Syed Najeeb-uz-Zaman Haider, Weihua Zhu* and Xu Liang

Methyl Red-Porphyrin Chiral Hybrids: Expansion of Chiral-Optical Response in the Visible Region

Dyes and Pigments 2020, 181, 108565

21. Xu Liang, Yuanyuan Qiu, Xifeng Zhang and Weihua Zhu*

Post-Functionalization of Co(III)PPh3triarylcorroles through Suzuki-Miyarura Couplings and Their Tunable Electrochemically Catalyzed Hydrogen Evolutions and Oxygen Reductions.

Dalton Trans. 2020, 49, 3326–3332 

22. Xifeng Zhang, Yu Wang, Weihua Zhu*, John Mack, Rodah C. Soy, Tebello Nyokong, and Xu Liang.

Meso- and axially-modified IrIIItriarylcorroles with Tunable Electrocatalytic Properties.

Dyes and Pigments 2020, 175, 108124.

23. Isaac Kwaku Attatsi, Weihua Zhu*, Xu Liang.

Surface Molecular Engineering of Axial-Exchanged Fe(III)Cl- and Mn(III)Cl-Porphyrins towards Enhanced Electrocatalytic ORRs and OERs

Inorg. Chim. Acta 2020, 507, 119584

24. Isaac Kwaku Attatsi, Weihua Zhu*, Xu Liang.

Noncovalent Immobilization of Co(II)porphyrin through Axial Coordination as an Enhanced Electrocatalyst on Carbon Electrode for Oxygen Reductions and Evolutions.

New. J. Chem. 2020, 44, 4340-4345

25. Isaac Kwaku Attatsi, Heng Zhong, Jiangting Du, Weihua Zhu*, Minzhi Li, Xu Liang.

Multiwalled carbon nanotube conjugates of pyrene-substituted metalloporphyrins as electrocatalysts for hydrogen evolution reactions.

Inorg. Chim. Acta 2020, 503, 119398.

26. Min Liang, Yuanyuan Li, Yutao Rao, Bangshao Yin, Ling Xu, Mingbo Zhou, Tingting Gu, Xu Liang, Weihua Zhu*, Donghai Yu, Shubin Liu and Jianxin Song.

Synthesis and Characterization of Porphyrin-Pyrene Hybrids.

J. Porphyrins Phthalocyanines 2020, 24, 278–285

27. Fanjian Cai, Fei Xia, Yingxin Guo, Weihua Zhu*, Bo Fu, Zhengchun Cai, Haijun Xu.

“OFF-ON-OFF” Type of Selected pH-Sensing 8-Hydroxyquinoline-Substituted Gallium(III)Corrole.

New J. Chem. 2019, 43, 18012-18017.

28. Xu Xu, Xinyi Dong, Zhen Zhang, Xin Du, Weihua Zhu*, Xu Liang, Long Zhao, and Haijun Xu.

Synthesis and Properties of 9,9’-(C12H25)2-Fluorene Substituted Corrole Monomer and its Bridged Dimer.

Macroheterocycles 2019, 12(4), 403-408.

29. Tingting Gu, Junxia Wen, Weihua Zhu* and Xu Liang

A2B type Cu(III)-triarylcorroles: Synthesis and Tunable Electrocatalyzed Hydrogen Evolution Behaviors.

Macroheterocycles 2019, 12(2) 129-134.

30. Yingxin Guo, Tingting Gu, Pengfei Li, Bo Fu, Lei Sun, Weihua Zhu*, Haijun Xu and Xu Liang

A2B Corrole with a meso-[PtII(bipy)Cl2]-substituent: Synthesis, Electronic structure and Highly Efficient Electrocatalyzed Hydrogen Evolutions.

Inorg. Chim. Acta 2019, 496, 119067.

31. Weihua Zhu*, Syed Najeeb-uz-Zaman Haider, Honglin Zhang, Isaac Kwaku Attatsi, John Mack, Somila Dingiswayo, Tebello Nyokong, Yuting Song, Haijun Xu, Xu Liang

Chiral Amide-Bonded Porphyrin Dimers with Various Functional Bridging Blocks: Synthesis, Characterization, Electronic Structure and Tunable Molecular Chirality.

Dyes and Pigments 2019, 171, 107740.

32. Xu Liang, Mingfeng Qin, Xiaomei Zhang, John Mack, Rodah C. Soyc, Tebello Nyokongc, Weihua Zhu*

Chiral Modulation from Molecular to Macroscopic Levels by Synthetic Chiral Amide-Bonded Porphyrin Dimers

Dyes and Pigments. 2019, 171, 107637.

33. Tingting Gu, Weihua Zhu*, Jiayu Tao, John Mack, Rodah C. Soyd, Tebello Nyokong, Haijun Xu and Xu Liang.

Cobalt Tetraphenyltetraphenanthroporphyrin: Enhanced ππ Interaction for Robust Hydrogen Evolution and Oxygen Reduction Reactions.

New J. Chem. 2019, 43, 10631-10636.

34. Ting-Ting Zhang, Hui-Qiong Xiao, Wa-Hung Leung, Yu Wang, Weihua Zhu*, Xu Liang, and Xiao-Yi Yi.

Dinuclear Ruthenium(I) Carbonyl Complexes with Bis(pyridyl)pyrrolide Ligands: Synthesis, Structure and Their Use in Electroreduction of Carbon Dioxide.

J. Organometallic Chem. 2019, 896, 102-107.

35. Xu Liang, Honglin Zhang, He Luo, Minfeng Qin, Minzhi Li and Weihua Zhu*

Bio-inspired Ni(II)Porphyrin Dimers with a Bridging Diphenyl Moiety: Facile Synthesis and Molecular Inherent Chirality.

Macroheterocycles 2019, 12, 35-39.

36. Qizhao Li, Chengjie Li, Jinseok Kim, Masatoshi Ishida, Xin Li, Tingting Gu, Xu Liang, Weihua Zhu, Hans Agren, Dongho Kim, Hiroyuki Furuta, and Yongshu Xie.

Regioselectively Halogenated Expanded Porphyrinoids as Building Blocks for Constructing Porphyrin-Porphyrinoid Hetero-Dyads with Tunable Energy Transfer.

J. Am. Chem. Soc. 2019, 141, 5294−5302.

37. Qizhao Li, Masatoshi Ishida, Hiroto Kai, Tingting Gu, Chengjie Li, Xin Li, Glib Baryshnikov, Xu Liang, Weihua Zhu, Hans Ågren, Hiroyuki Furuta, Yongshu Xie.

Thiophene‐Cleavage‐Triggered Skeletal Rearrangement of a Twisted Thia‐norhexaphyrin towards Multiply‐Annulated Polypyrrolic Aromatic Macrocycles.

Angew. Chem. Int. Ed. 2019, 58, 5925-5929.