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田宏伟
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( 教授 )
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教授
主要任职 :
博士生导师,吉林大学唐敖庆学者“英才教授”
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性别 :
男
毕业院校 :
吉林大学
学历 :
博士研究生毕业
学位 :
博士
在职信息 :
在职
所在单位 :
材料科学与工程学院
学科 :
材料物理与化学
办公地点 :
前进大街2699号,吉林大学唐敖庆楼D区,材料科学系
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论文成果
[16] Structure-catalytic functionality of size-facet-performance in pentlandite nanoparticles. Journal of Energy Chemistry. 2023,78 :438-446
[17] Design and synthesis of Z-scheme LaFeO3/MoS2/graphene heterojunction with enhanced photocatalytic performance. Journal of Alloys and Compounds. 2023,934 :167948
[18] A general strategy for preparing hollow spherical multilayer structures of Oxygen-Rich vacancy transition metal Oxides, especially high entropy perovskite oxides. Chemical Engineering Journal. 2023,457 :141242
[19] Efficient fabrication of flower-like core–shell nanochip arrays of lanthanum manganate and nickel cobaltate for high-performance supercapacitors. Journal of Colloid and Interface Science. 2023,630 (Part A):618-628
[20] Inducing the cocktail effect in yolk-shell high-entropy perovskite oxides using an electronic structural design for improved electrochemical applications. Chemical Engineering Journal. 2023,452 (Part 3):139501
[21] Efficient Visible-light-driven Tetracycline Degradation and Cr(VI) Reduction over a LaNi1-xFexO3 (0≤x≤1)/g-C3N4 Type-II Heterojunction Photocatalyst. Inorganic Chemistry. 2023,62 (3):1086-1094
[22] Controllable vacancy strategy mediated by organic ligands of nickel fluoride alkoxides for high-performance aqueous energy storage. Journal of Materials Chemistry A. 2023,11 :1169-1179
[23] Improved Catalytic Activity and Stability of Co9S8 by Se Incorporation for Efficient Oxygen Evolution Reaction. Inorganic Chemistry. 2022,61 (51):21139-21147
[24] Surface reconstruction and sulfur vacancies engineering in pentlandite for improving hydrogen evolution reaction. Applied Surface Science. 2022,604 :154470
[25] The charge transport double-channel structure facilitating Fe5Ni4S8/Ni3S2 nanoarray for efficient and stable overall water splitting. Applied Surface Science. 2022,604 :154473
[26] One-pot hydrothermally prepared rGO/SiC/CoFe2O4 composites with strong microwave absorption at different thicknesses. Ceramics International. 2022,48 (20):30640-30650
[27] Two-step fabrication of lanthanum nickelate and nickel oxide core-shell dandelion-like materials for high-performance supercapacitors. Journal of Colloid and Interface Science. 2022,617 :430-441
[28] Coaxial cable-like dual conductive channel strategy in polypyrrole coated perovskite lanthanum manganite for high-performance asymmetric supercapacitors. Journal of Colloid and Interface Science. 2022,610 :601-609
[29] Enhancing stability of Co9S8 by iron incorporation for oxygen evolution reaction and supercapacitor electrodes. Chemical Engineering Journal. 2022,431 (Part 1):133980
[30] Molybdenum disulfide loading on a z-scheme graphitic carbon nitride and lanthanum nickelate heterojunction for enhanced photocatalysis: Interfacial charge transfer and mechanistic insights. Journal of Colloid and Interface Science. 2022,611 :684-694
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