
陈水生,博士,教授,硕士研究生导师。2022-2025年间,连续入选年度全球前2%顶尖科学家榜单,2025年入选终身科学影响力排行榜。
电子邮箱:chenss@fynu.edu.cn
学习工作经历:
2004年7月 南昌大学 化学硕士学位
2010年7月 南京大学 化学博士学位
2004年7月 讲师
2010年10月 副教授
2014年10月 教授,硕士研究生导师
主要研究方向:
有机合成;金属-有机骨架材料合成与性质研究。
成果简介:
一、主持各类项目
1. 国家自然科学基金面上项目:微孔咪唑酯骨架材料的构筑及其吸附性能的研究;
2. 安徽省教育厅科学研究重大项目:金属硫氮唑基荧光传感材料的功能化导向设计及其识别性能;
3. 安徽省自然科学基金项目:含活性位点荧光金属-有机框架材料的合成及其对客体分子的识别性能;
4. 安徽省高校学科(专业)拔尖人才重点项目:多氮唑微孔金属有机骨架的导向合成及性能研究;
5. 安徽省教育厅科学研究重大项目:含多活性位点微孔金属有机骨架的构筑及性能研究;
6. 南京大学配位化学国家重点实验室项目:含1, 2, 4-三唑母核多羧基芳香酸微孔配合物的构筑和气体吸附性质研究;
7. 阜阳市政府-阜阳师范学院横向合作重点项目:微电解 + MBBR + MBR偶联工艺法对污水水质的监测与治理;
8. 安徽省高校省级科学研究项目:微孔分子咪唑盐配位聚合物的构筑及其吸附性能研究。
二、各类获奖
安徽省自然科学技术三等奖(第一获奖人):具有特定功能导向新材料的构筑和性能研究。
三、代表性论文
1. One-Step Purification of Polymer-Grade C2H4 with Simultaneous Trace C2H2 Recovery Enabled by a Low-Cost MOF with Finely Tuned Pore Electrostatics. Ziyou Zhang*, Tao Cui, Guangzu Xiong, Bingjie Ruan, Mengyu Huo, Yuhao Qin, Shuangfang Li*, and Shuisheng Chen*, ACS Sustainable Chem. Eng. 2026, DOI: 10.1021/acssuschemeng.6c00880.
2. Scalable and low-cost polar Nano-traps Zn-MOF for Cascade high-purity CH4 recovery and C2H2 purification under humid conditions, Ziyou Zhang*, Guangzu Xiong, Jun Chen, Tao Cui, Xiaoxia Zhang, Yuting Cheng, Yule Yan, Bingjie Ruan, Mengyu Huo, Chaoyang Li, Shuisheng Chen*, Sep. Purif. Technol., 2026, 382, 135796.
3. Simultaneous interface and bulk morphology control by a kinked self-assembled molecule for 20 % efficient organic solar cells, Ting Su, Jinjian He, Haoling Zhang, Xiyu Cheng, Miaomiao Zhang, Yaoyao Zhu, Renyong Geng*, Shuisheng Chen*, Xin Song*, Chem. Eng. J., 2026, 527, 171962.
4. Study of structures and properties of three metal-organic frameworks based on mixed polyazaheteroaromatic and carboxylate ligands, Meng-Yu Huo, Jie Liu*, Bing-Jie Ruan, Zi-You Zhang*, Yu-Hao Qin, Shui-Sheng Chen, J. Mol. Struct., 2026, 1369, 146376.
5. A 2D robust microporous Cu-MOF for efficient separations for C2H2/CO2/CH4 mixtures, Yu-Han Xu, Zi-You Zhang*, Meng-Yu Huo, Xiao-Xia Zhang, Bing-Jie Ruan, Shui-Sheng Chen*, J. Mol. Struct., 2026, 1349, 143944.
6. A Distinct Microporous Metal?Organic Framework with Multiple Accessible Adsorption Sites for Separation of C2H2/CO2/CH4 Mixtures, Xiao-Xia Zhang, Shui-Sheng Chen*, Meng-Yu Huo, Zi-You Zhang*, Lei Hou*, and Chao-Yang Li, Inorg. Chem. 2025, 64, 18664?18671.
7. The adsorption and light hydrocarbon separation performance for the scalable synthesis of microporous Cu-MOF, Yu-Ting Du, Yu-Han Xu, Zi-You Zhang*, Meng-Yu Huo, Xiao-Xia Zhang, Shui-Sheng Chen*, J. Mol. Struct., 2025, 1336, 142090.
8. A stable paddle-wheel Co-MOF (FNU-2) for the efficient separation of light hydrocarbons, Guang-Zu Xiong, Jie Zhang, Bing Lin, Yu-Ting Du, Bingwen Li*, Liu-Cheng Gui, Xiao-Xia Zhang, Zhihui Qiu, Xing-Zhe Guo**, Shui-Sheng Chen*, Micropor. Mesopor. Mat., 2024, 366, 112970.
9. High-capacity adsorption of organic dyes using separable pullulan gel encapsulated with PDA-modified ZIF-8, Ting Su, Hongxia Shang, Xinru Su, Zhixian Sun, Yuehan Li, Linwen Li, Zhen Zhang*, Renyong Geng*, Shuisheng Chen*, Carbohydr. Polym., 2024, 345, 122562.
10. Tunning interfacial interaction strategy by asymmetric configuration to construct self-assembly materials for efficient organic solar cells, Renyong Geng, Shenzheng Gao, Jinjie Liu, Xinjie Zhou, Zhixian Sun, Xinyu Ma, Xuening Lu, Hao Xu, Ting Su*, Zhen Zhang, Shuisheng Chen*, Jun Yin*, Xin Song*, Chem. Eng. J., 2024, 483, 149035.
11. A stable microporous framework with multiple accessible adsorption sites for high capacity adsorption and efficient separation of light hydrocarbons, Xiao-Xia Zhang, Xing-Zhe Guo, Shui-Sheng Chen*, Hong-Wei Kang, Yue Zhao*, Ji-Xing Gao, Guang-Zu Xiong, Lei Hou*, Chem. Eng. J., 2023, 466, 143170.
12. A Series of Metal?Organic Frameworks: Syntheses, Structures and Luminescent Detection, Gas Adsorption, Magnetic Properties, Shui-Sheng Chen*, Shuai-Shuai Han, Cheng-Bing Ma*, Wei-Dong Li, and Yue Zhao*, Cryst. Growth Des. 2021, 21, 869?885.
13. A Photoluminescent Cd(II) Coordination Polymer with Potential Active Sites Exhibiting Multiresponsive Fluorescence Sensing for Trace Amounts of NACs and Fe3+ and Al3+ Ions, Shui-Sheng Chen*, Zi-You Zhang, Rong-Bao Liao, Yue Zhao*, Chuang Wang, Rui Qiao, and Zhao-Di Liu, Inorg. Chem. 2021, 60, 4945?4956.
14. Enhanced cycling stability and rate capability of a graphene-supported commercialized Vat Blue 4 anode for advanced Li-ion batteries, Hongwei Kang, Quanwei Ma, Rui Wang, Longhai Zhang*, Shuisheng Chen*, Xinrui Wang and Chaofeng Zhang, Chem. Sci., 2022, 13, 11883.
15. Effect of synergistic interplay between surface charge, crystalline defects, and pore volume of MIL-100(Fe) on adsorption of aqueous organic dyes, Xing-Zhe Guo, Shuai-Shuai Han, Ji-Min Yang*, Xiao-meng Wang, Shui-Sheng Chen*. ?Ind. Eng. Chem. Res.?, 2020, 59, 5, 2113-2122.
16. The syntheses, structures, and properties of metal-organic frameworks based on mixed multi-N donor and carboxylate ligands, Wei-Dong Li, Shui-Sheng Chen*, Shuai-Shuai Han, et al. J. Solid State Chem., 2020, 283, 121133.
17. Series of Cadmium(II) Coordination Polymers Based on a Versatile Multi-N-Donor Tecton or Mixed Carboxylate Ligands: Synthesis, Structure, and Selectively Sensing Property, Xing-Zhe Guo, Shui-Sheng Chen*, Wei-Dong Li, et al. ACS Omega, 2019, 4, 11540?11553.
18. Four new transition metal coordination polymers based on mixed 4-imidazole and carboxylate–sulfonate ligands: Syntheses, structures, and properties, Shui-Sheng Chen*, Jia-Le Li, Wei-Dong Li, Xing-Zhe Guo, Yue Zhao, J. Solid State Chem., 2019, 277 510–518.
19. Metal(II) Coordination Polymers Derived from Mixed 4-Imidazole Ligands and Carboxylates: Syntheses, Topological Structures, and Properties, Wei-Dong Li, Jia-Le Li, Xing-Zhe Guo, Zhi-You Zhang and Shui-Sheng Chen*, Polymers, 2018, 10, 622.
20. The roles of imidazole ligands in coordination supramolecular systems (Highlight, Inside front paper), Shui-Sheng Chen*, CrystEngComm, 2016, 16, 6543–6565.
21. Syntheses, Structures and Properties of a Series of Polyazaheteroaromatic Core-Based Zn(II) Coordination Polymers Together with Carboxylate Auxiliary Ligands, Shui-Sheng Chen*, Liang-Quan Sheng, Yue Zhao, et al., Cryst. Growth Des., 2016, 16, 229-241.
22. Zinc(II) and cadmium(II) metal-organic frameworks with 4-imidazole containing tripodal ligand: sorption and anion exchange properties, Shui-Sheng Chen, Peng Wang, Satoshi Takamizawa, et al., Dalton Trans., 2014, 43, 6012-6020. (Inside front paper)
23. New Metal-Organic Frameworks Constructed from the 4-Imidazole Carboxylate Ligand: Structural Diversities, Luminescence, and Gas Adsorption Properties, Shui-Sheng Chen*, Qing Liu, Yue Zhao, et al., Cryst. Growth Des., 2014, 14, 3727-3741.
24. Cadmium(II) and zinc(II) complexes with rigid 1-(1H-imidazol-4-yl)-3-(4H-tetrazol-5-yl)benzene and varied carboxylate ligands, Shui-Sheng Chen*, Rui Qiao, Liang-Quan Sheng, et al., CrystEngComm, 2013, 15, 5731-5725.
25. Four Complexes with the Rigid Ligand 1,4-Bis(1H-imidazol-4-yl) benzene and Varied Carboxylate Ligands, Shui-Sheng Chen*, Rui Qiao, Liang-Quan Sheng, et al., Z. Anorg. Allg. Chem., 2013, 639, 1808–1814.
26. Synthesis and Characterization of Metal Complexes with Mixed 4-Imidazole-Containing Tripodal Ligand and Varied Dicarboxylic Acid, Shui-Sheng Chen, Zhi-Hao Chen, Jian Fan, et al., Cryst. Growth Des., 2012, 12, 2315?2326.
27. Construction of coordination frameworks based on 4-imidazolyl tecton 1,4-di(1H-imidazol-4-yl)benzene and varied carboxylic acids, Shui-Sheng Chen, Yue Zhao, Jian Fan, et al., CrystEngComm, 2012, 14, 3564–3576.
28. Temperature dependent selective gas sorption of the microporous metal-imidazolate framework [Cu(L)] [H2L=1,4-di (1H-imidazol -4-yl)benzene, Shui-Sheng Chen, Min Chen, Satoshi Takamizawa, et al, Chem. Commun., 2011, 47, 752-754.
29. Porous cobalt(II)-imidazolate supramolecular isomeric frameworks with selective gas sorption property, Shui-Sheng Chen, Min Chen, Satoshi Takamizawa, et al, Chem. Commun., 2011, 47, 4902-4904.
30. Entangled Coordination Frameworks with 1,4-Di(1H-imidazol-4-yl)benzene, Shui-Sheng Chen, Gao-Chao Lv, Jian Fan, et al, Cryst. Growth Des., 2011, 11, 1082-1090.
31. Synthesis, Crystal Structure, and Photoluminescence of a Series of Zinc(II) Coordination Polymers with 1,4-Di(1H-imidazol-4-yl)benzene and Varied Carboxylate Ligands, Shui-Sheng Chen, Jian Fan, Taka-aki Okamura, et al, Cryst. Growth Des., 2010, 10, 812-822.
32. Synthesis and characterization of metal complexes with mixed 4-imidazole-containing ligand and varied multi-carboxylic acid, Shui-Sheng Chen, Zheng-Shuai Bai, Jian Fan, et al, CrystEngComm, 2010, 12, 3091-3104.