赵金生老师简介
作者: 发布时间:2024-12-01
https://www.researchgate.net/profile/Jinsheng-Zhao-2 | ||
博士/教授 硕士/博士生指导教师;Email/ j.s.zhao@163.com |
研究方向:光催化产氢/二氧化碳还原; 电催化ORR/OER; 锂离子电池;电致变色
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讲授课程:化工专业英语;精细有机合成单元反应;精细化工工艺学
教育经理:
1993年9月-1996年7月:沈阳化工大学 材料科学与工程学院,高分子化工专业
1999年9月-2002年7月:中国石油大学(华东),应用化学硕士学位
2002年9月-2005年7月:中国科学院理化技术研究所,物理化学博士学位。
主持承担的课题:
[1]国家自然科学基金青年基金,20906043,有电子媒介体参与的微生物燃料电池的产电制及媒介体的固定化研究,2010-01至2012-12,20万元,已经结题,主持
[2]国家自然科学基金面上项目,51473074,含三苯胺单元的可溶性D-A型共轭聚合物的合成、电致变色性质及器件制备研究,2015-01至2018-12, 80万元,已经结题,主持。
[3]国家自然科学基金面上项目,22172069,供体-受体型共轭聚合物/石墨烯/氮化碳异质结催化剂的构建、产氢活性及机制研究,2022-01至2025-12,60万元。在研。
[4]国家自然科学基金面上项目(合作申请),22272070,原位探究负载型金属催化剂在光热催化CO2甲烷化中寿命和失活机制,2023-01至2025-12,10万元。在研。
获奖情况
[1] 2011年 生物电分析化学新方法研究;山东省自然科学奖二等奖,排名第二
[2] 2015年 山东省青年科技奖
[3] 2009年 生物电分析化学新方法研究;山东省高等学校优秀科研成果奖一等奖,排名第二
[4] 2012年 新型纳米与导电聚合物材料;山东省高等学校优秀科研成果奖一等奖,排名第二
[5] 2015年,基于廉价金属的能源催化体系及新型能源材料的构建与性能研究;山东省高等学校优秀科研成果奖三等奖,排名第二
论文发表(2024):
[1] J.M. Zhao, Y. Yuan, F. Zhao, W. Han, Q. Yuan, M.M. Kou, J.S. Zhao* et al. Identifying the facet-dependent active sites of Cu2O for selective C-N coupling toward electrocatalytic urea synthesis. Applied Catalysis B: Environmental, 340(2024) 123265.
[2] S.L. Ming, Z.S. Li, J.Y. Wang, H. Zhang*, J.S. Zhao*. Toward soluble high-performance electrochromic polymer: Optimizing cross-link density. Chemical Engineering Journal, 479 (2024), 147623.
[3] Y.M. Cai, G.Y. Zhao, Q. Yuan*, J.S. Zhao*. Elaborate designed sandwich structural faradic material NPC/NiMn-LDH/MXene for enriched ion accessible transfer pathways in capacitive deionization. Chemical Engineering Journal, 484(2024), 149491.
[4] H.G. Yue, X.P. Ju, S.L. Ming, Y. Zhang, J.S. Zhao*, Y.C. Du*, J.H. Zhang*. Molecular design of multifunctional integrated conjugated polymers with photoluminescence and electrochromic properties and constructing the electrochromic devices. Chemical Engineering Journal, 2024, 502, 157931.
[5] Y.Q. Song, F. Zhao, W.Q. Zhang, J.S. Zhao*, F.P. Meng*, A.F. Li*. The insertion of thiazolo[5,4-d]thiazole unit in covalent triazine framework for boosting the photocatalytic capacities in both selective aerobic oxidation of sulfides and amines. Journal of Catalysis, 2024, 433, 115490.
[6] Y.M. Cai, F. Zhao, J.S. Zhao*, Y. Wang*. Flexible construction of three-dimensional continuous conductive structure by hollow carbon sphere and CNT for promoted ions transport in flow-electrode capacitive deionization. Separation and Purification Technology, 2024, 337, 126405.
[7] Y. Lu, Y.Q. Wang, J. Liu, Y.X. Chen, K. Peng, A.Q. Zhang*, Y. Xie*, Y.C. Ma, J.S. Zhao*. Embedding Pt in Ni-MOF/CdS organic-inorganic hybrid materials as electron channel to promote photogenerated carrier separation for enhanced photocatalytic hydrogen evolution under visible light. Separation and Purification Technology, 2024, 350, 128000.
[8] Z.B. Li, F. Zhao, Y. Chu, F.P. Meng, Y.Y. Dong, H.Y. Zhang*, J.S. Zhao*, Y.C. Du*, S.B. Wang. Fused-thiophene and sulfone-based donor–acceptor conjugated polymers for enhanced hydrogen production. ACS Sustainable Chemistry & Engineering, 2024, 12(2), 1072-1083.
[9] W.Q. Zhang, Y. Chu*, C. Wang, Y.T. Zhao, W. Chu*, J.S. Zhao*. Enhancing photocatalytic hydrogen production efficiency in all-inorganic lead-free double perovskites via silver doping-induced efficient separation of photogenerated carriers. Separation and Purification Technology, 2025, 357, 130111.
[10] J.M. Zhao, M.M. Kou, Q. Yuan, Y. Yuan*, J.S. Zhao*. Hydrogen Spillover-Bridged Interfacial Water Activation of WCx and Hydrogen Recombination of Ru as Dual Active Sites for Accelerating Electrocatalytic Hydrogen Evolution. Small, 2024, 2406022.
[11] Z.B. Li, Y. Chu, F.P. Meng, Y.Y. Dong, J.S. Zhao*, H.Y. Zhang*, X.J. Zhong*. Cross-linked conjugated polymers based on triazine and polybranched polycyclic thiophene for improved photocatalytic hydrogen evolution. J. Mater. Chem. A., 2024, 12, 25761-25772.
[12] Y. Zhang, Y.B. Shang, M. Cheng, Q. Guo, X.Y. Liu, B.Y. Zeng, D.N. Wang, G.X. Zhang*, Z.F. Yan, Jinsheng Zhao*. Direct electrochemical N2 oxidation to nitrate on supportive Pt/CeO2. Chem. Commun., 2024, 10.1039/D4CC05397D
[13] Z.R. Zhang, X. Han, J.H. Zhang*, Y.Y. Dong, J.S. Zhao*, Q. Xu, N.Q. Zhang*. Revolutionizing photothermal CO₂ hydrogenation with ceria-based catalysts. Nano Research, 2024, https://doi.org/10.26599/NR.2025.94906998.
[14] W. Tang, L.X. Luo, Z.Y. Fan, A.Q. Zhang*, Y.C. Ma, Y. Xie*, J.S. Zhao*. CdS nanorods decorated with non-precious metal Bi spheres for photocatalytic hydrogen production. Materials Today Chemistry, 2024, 37, 102000.
[15] R.L. Zhao, Y.K. Wang, M.M. Kou, P.Z. Li, J.M. Zhao, Y.M. Cai, X. Zhang, Q. Yuan*, J.S. Zhao*. Novel metal-organic anode material by in-situ chelating Ni2+ with tannic acid on carbon nanotube for high-performance Li storage. Journal of Power Source, 2024, 622, 235360.
[16] Z.S. Li, X. Wang, X.Y. Liu, H.T. Liu, S.L. Ming*, J.S. Zhao*. Regulation of Br on molecular aggregation, film morphology and electrochromic performance of polythiophene derivatives. Solar Energy Materials and Solar Cells. 2024, 278, 113205.
[17] M. Wang, Y. Chu, F.P. Meng, J.S. Zhao*, H.Y. Zhang*, S.B. Wang, J.H. Zhang*. Enhancing photocatalytic hydrogen production in conjugated porous polymers through donor-π-donor fragment insertion. International Journal of Hydrogen Energy, 2024, 79, 492-502.
[18] J.M. Zhao, Y. Yuan, M.M. Kou, F.P. Meng, W. Lin*, J.S. Zhao*, P. Tsiakaras*. Carbon dioxide and nitrate reduction reactions tailoring kinetics over Cu2O with mesoporous carbon channels for boosting electrocatalytic urea synthesis. Journal of Environmental Chemical Engineering, 2024, 114959.
[19] G.Y. Zhao, F. Zhao*, X. Wang, S.L. Ming*, J.S. Zhao*. Yellow-transmissive blue electrochromic polymers based on triphenylamine and ProDOT derivatives. Colloids and Surfaces A: Physicochemical and Engineering Aspects., 2024, 703, 135380.
[20] M. Liu, F. Zhao, Y. Chu, J.S. Zhao*, F.P. Meng*, Y.F. Han*. Construction of thiazolo[5,4-d]thiazole based covalent triazine framework/g-C3N4 heterojunction catalysts for highly efficient photocatalytic H2 evolution. Chemical Engineering Science, 2024, 288, 119827.
[21] Y.R. Li, H.M. Du*, Y.F. Su, J.S. Zhao*, K.G. Qu, X.X. Zhang, Y. Zhang, Y.Y. Dong, Z.R. Guo. Construction of Heterostructured NiS/NiSe2 and their application in electrocatalytic water splitting. International Journal of Hydrogen Energy, 2024, 66, 286-293.
[22] Y. Chu, F. Zhao, F.P. Meng, W.Q. Zhang*, J.S. Zhao*, X.J. Zhong*. Donor-acceptor type conjugated porous polymers based on benzotrithiophen and triazine derivatives: Effect of linkage unit on photocatalytic water splitting. International Journal of Hydrogen Energy, 2024, 64, 109-119.
[23] Y.Y. Dong, R.Y. Song, Z.R. Zhang, X. Han, B. Wang, S. Tao, J.S. Zhao*, Z. Chen*, X.D. Yi, N.Q. Zhang*. Advances in photothermal CO2 hydrogenation catalysis for C1 molecules. Cell Reports Physical Science, 2024, 5(10), 102227.
[24] Z.B. Li, Y. Chu, T.F. Mi, J.S. Zhao*, F.P. Meng*. Enhanced photocatalytic H2 evolution over conjugated polymer/Au@TiO2 ternary heterojunction under visible light: Enriched photons input from polymers. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2024, 692, 133991.
[25] S.L. Ming, Z.S. Li, H. Sun, R.Y. Du, J.L. Zhang, J.S. Zhao*. Ether chain modified electrochromic polymer based on EDOT and benzene. European Polymer Journal, 2024, 218, 113364.
[26] Y.J. Xue, J.S. Zhao*, A.F. Li*. Development of single-atom Ru and N, S-Co-doped carbon catalyst for enhanced cycling stability of lithium-oxygen batteries. International Journal of Electrochemical Science, 2024, 19(7), 100602.
[27] F. Nie, H.H. Wen, X.D. Chong, X.P. Dai*, Y.K. Yang, J.S. Zhao*. Sulfur doping and heterostructure on NiSe@Co(OH)2 with facilitated surface reconstruction and interfacial electron regulation to boost oxygen evolution reaction. Fuel, 2024, 1016/j.fuel.2024.133978
[28] X.D. Liu, F. Zhao, S.L. Ming, Y. Zhang*, J.S. Zhao*. Construction of two-dimensional porous polymers with crystalline or amorphous forms for near-infrared electrochromism. European Polymer Journal, 2024, 208, 112853.
[29] Y.K. Yang, W. Jiang, Z.P. Yuan, J.S. Zhao*, S.J. Qu*. Harvest pitch-based carbon nanosheets by oxidation and in-situ template strategy for all-solid-state supercapacitors. Journal of Analytical and Applied Pyrolysis. 2024, 179, 106461.
[30] Y.K. Yang, G.S. Ni, L.Y. Liu*, J.S. Zhao*, S.J. Qu*. Designing P-doped graphite-like hierarchical porous carbon nanosheets from coal tar pitch for enhanced Zn-ion hybrid capacitors. Colloids and Surfaces A: Physicochemical and Engineering Aspects., 2024, 695, 134279.
[31] Y.C. Duan, B. Hu, Y.P. Luo, Y. Xie*, Y. Chen, Y.F. Zhang*, Y. Ling, J.S. Zhao*. In situ growth of Mo-CoFe LDH on nickel foam for efficient oxygen evolution reaction. Electrochimica Acta, 2024, 487, 144189.
[32] K. Peng, S.H. Yu, Y.P. Luo, A.Q. Zhang*, Y. Xie*, Y.X. Luo, Y. Ling, J.S. Zhao*. Enhancement TiO2 photocatalytic hydrogen production via using ABO3 to construct heterojunction. Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2024, 682, 132822.
[33] Y. Xie*, Y.Q. Wang, Y.P. Zhou, F.H. Wang*, Y. Xu, S.L. Rao, J.S. Zhao*. Cation exchange strategy to construct Co-doped BiOBr nanosheets for high-efficient photocatalytic CO2 to CO. Applied Catalysis A: General, 2024, 669, 119504.
[34] H.G. Yue, M.Q. Guo, S.L. Ming, H.M. Du, J.S. Zhao*,J.H. Zhang*. Fine-tuning the color hue of the solution-processable electrochromic copolymers based on the diketopyrrolopyrrole, benzodithiophene and dithienosilole units. Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2024, 684, 133094.
[35] Y.J. Xue, G.Y. Zhao, W.Q. Zhang, J.S. Zhao*, F.P. Meng*, F. Zhao*. Linkage Unit Modulation of Triazine-Based Conjugated Porous Polymers/g-C3N4 Heterostructures To Boost Cocatalyst-Free Photocatalytic Water Splitting. ACS Applied Polymer Materials, 2024, 6(18), 11444-11456.
[36] S.L. Ming, Z.S. Li, R.Y. Yi, J.S. Zhao*, K.W. Lin*, H. Zhang*. Influence of Cross-Link Density on Electrochromic Properties of Conjugated Polymer. ACS Applied Polymer Materials., 2024, 6(12), 7161-7170.
[37] J.M. Zhao, M.M. Kou, Q. Yuan*, J.S. Zhao*. Encapsulating Transition Metal Nanoparticles inside Carbon (TM@C) Chainmail Catalysts for Hydrogen Evolution Reactions: A Review. Molecules, 2024, 29(19), 4677.
[38] M.M. Kou, Y. Yuan, R.L. Zhao, Y.K. Wang, J.M. Zhao*, Q. Yuan*, J.S. Zhao*. Insights into the Origin of Activity Enhancement via Tuning Electronic Structure of Cu2O towards Electrocatalytic Ammonia Synthesis. Molecules, 2024, 29(10), 2261.