青岛科技大学纳米电催化课题组

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姜鲁华 教授
中科院百人

泰山学者特聘教授

德国洪堡学者

     能源短缺和环境污染是当今世界面临的两大难题,研究团队围绕洁净高效新型电能源技术,聚焦电能源相关的纳米材料和电催化应用基础研究。团队已发表SCI收录论文近200篇,SCI他引>8000次,H指数49。纳米材料与电催化团队负责人姜鲁华教授连续多年入选Elsevier 能源领域/材料领域“中国高被引学者”和“全球前2%顶尖科学家”榜单。申请发明专利百余件,授权专利60余件。参与编写英文著作4部,译著1部。主持科技部、国家基金委、山东省科技厅等省部级以上项目20余项。研究成果曾获国家自然科学二等奖、辽宁省自然科学一等奖、国防技术发明二等奖、大连市技术发明一等奖、山东省自然科学学术创新奖等多个奖项。团队教师兼任 Chemical Engineering JournalNano Materials ScineceJournal of Electrochemistry 等多个期刊的编委/编辑。团队培养硕博士研究生50余名,多名研究生获得国家奖学金和各类奖助学金以及研究生创新研究计划支持,培养的本科生多人获得大学生创新研究计划支持。

    欢迎有志于新能源和环境纳米电催化研究的青年人才和优秀学子加入团队!


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· 126. Unique Ru nanoclusters confined in carbon molecular sieve coatings with tailoring sub- 4 Å ultramicropores as a highly efficient and CO-tolerant hydrogen oxidation electrocatalyst, Chem Eng J., 2023, 468, 143438. 2023/03/15 
· 125. Facile electrodeposition synthesis and super performance of nano-porous Ni-Fe-Cu-Co-W high entropy alloy electrocatalyst, Surface & Coatings Technology, 2023, 459, 129407 2023/03/10 
· 124. Electrochemically induced dilute gold-in-nickel nanoalloy as a highly robust electrocatalyst for alkaline hydrogen oxidation reaction, Chem Eng J, 2023, 464, 142692. 2022/12/19 
· 123. One stone three birds: an aqueous Mg–CO2 battery for generation of electricity, syngas and high–value phosphate, ACS Sus Chem Eng, 2023,11,3123-3132 2022/12/14 
· 122. Electronic structure modulation of MoO2 via Er-doping for efficient overall water/seawater splitting and Mg/seawater batteries, Applied Surface Science, 2023, 615, 156360. 2022/11/30 

· 121. Steering Pt/C to Highly Active CO-Tolerant Hydrogen Oxidation Reaction Catalyst in Alkaline Media via N-Doped Carbon Layer Confinement, Applied Surface Science,2023, 614,156131. 2022/10/25 
· 120. Photo-Assisted Seawater-Electrolyte Mg/H2O Batteries for Simultaneous Generation of Electricity and Hydrogen, Chem Eng J., 2023,455,140875. 2022/10/19 
· 119. Engineering of Unique Ni-Ru Nano-Twins for Highly Active and Robust Bifunctional Hydrogen Oxidation and Hydrogen Evolution Electrocatalysis, Chem Eng J., 2023, 454, 139959 2022/10/14 
· 118.Recent advances in electrocatalysts for seawater splitting, Nano Mater Sci, 2023,5,101-116 2022/10/14 
· 2023↑↑↑ 2022/10/14 

· 117. Heteroatom Doped Asymmetric Metal-N4-C Single Atom Catalysts for Electrochemical CO2 Reduction Reaction, Chem.- Asian J., 2022, 17, e202200939. 2022/10/13 
· 116. Hierarchical carbon sponge for oxgyen reduction reaction of Zn-air batteries, Energy & Fuels, 2022, 36, 8562-8568 2022/07/03 
· 115. Electroless deposition synthesis of composite catalysts Ni-Fe-P-WO3/NF with superior oxygen evolution performance, Int J Hydrogen Energy, 2022,47,29305-29314 2022/07/01 
· 114. Self-powered electrolysis systems for sustainable hydrogen generation from natural seawater via a Ni/V2O3 Schottky electrode, Chem Eng J, 2022, 450, 138079 2022/06/30 
· 113. Axial Ligand Promoted Phosphate Tolerance of Atomically Dispersed Fe Catalyst towards Oxygen Reduction Reaction, J Mater Chem A, 2022,10,16722-16729 2022/05/10 

· 112. Mg/seawater batteries driven self-powered direct seawater electrolysis systems for hydrogen production, Nano Energy, 2022, 98, 107295 2022/04/17 
· 111. Mitigation of RuO6 Octahedron Distortion by Enhanced A-site Electronegativity in Pyrochlores for Acidic Water Oxidation, J Mater Chem A,2022, 10, 9419 2022/02/18 
· 110. Facile electrodeposited amorphous Co-Mo-Fe electrocatalysts for oxygen evolution reaction, Int J Hydrogen Energy, 2022, 47, 12506 -12514 2022/02/09 
· 109. Low-Temperature and Anhydrous Preparation of NixFey-LDHs as an Efficient Electrocatalyst for Water and Urea Electrolysis, Catalysis Communications, 2022, 162, 106390 2021/11/23 
· 108. B-ZnxCd1-xS/Cd heterojunction with sulfur vacancies for photocatalytic overall dyeing waste water splitting, ACS Sus Chem Eng, 2022, 10, 2938−2946 2021/11/03 
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