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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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[31] Oxygen-vacancy abundant alpha bismuth oxide with enhanced cycle stability for high-energy hybrid supercapacitor electrodes. Journal of Colloid and Interface Science. 2022,609 :878-889
[32] Theoretical insight into surface structures of pentlandite toward hydrogen evolution. Journal of Colloid and Interface Science. 2022,607 :645-654
[33] Highly Conductive Amorphous Pentlandite Anchored with Ultrafine Platinum Nanoparticles for Efficient pH-Universal Hydrogen Evolution Reaction. Advanced Functional Materials. 2021,31 (45):2105372
[34] Co-doped Pyrrhotite Fe7S8 Nanosheets as Bifunctional Electrocatalysts for Water Splitting. Ceramics International. 2021,47 (18):26484-26491
[35] Fabrication of Ag decorated g-C3N4/LaFeO3 Z-scheme heterojunction as highly efficient visible-light photocatalyst for degradation of methylene blue and tetracycline hydrochloride. Journal of Alloys and Compounds. 2021,864 :158914
[36] Graphene Decorated Iron Oxide Negative Electrodes with High Capacity, Excellent Rate Performance, and Wide Working Voltage for Aqueous Battery-Supercapacitor Hybrid Devices. Journal of Alloys and Compounds. 2021,864 :158147
[37] Highly efficient hybrid electrocatalyst Fe4.5Ni4.5S8/Fe7S8 extracted from nickel ore for hydrogen evolution reaction. Ceramics International. 2021,47 (9):12002-12009
[38] Double perovskite La2CoMnO6 hollow spheres prepared by template impregnation for high-performance supercapacitors. Chemical Engineering Journal. 2020,400 :125966
[39] Recent advances in pentlandites for electrochemical water splitting: A short review. Journal of Alloys and Compounds. 2020,838 :155685
[40] One-step synthesis of NiCo2S4 with high electrochemical performance used for hybrid capacitor. Journal of Alloys and Compounds. 2020,832 :155037
[41] Intrinsic Energy-Storage Mechanism of Low Crystallinity Nickel-cobalt Sulfide as Anode Material for Supercapacitors. Journal of Power Sources. 2020,451 :227822
[42] Nanosheet-Assembled LaMnO3@NiCo2O4 Nanoarchitecture Growth on Ni Foam for High Power Density Supercapacitors. Electrochimica Acta. 2019,318 :651-659
[43] Battery-like MnCo2O4 electrode materials combined with active carbon for hybrid supercapacitors. Electrochimica Acta. 2019,306 :599-609
[44] Rational design of La0.85Sr0.15MnO3@NiCo2O4 Core-Shell Architecture Supported on Ni Foam for High Performance Supercapacitors. Journal of Power Sources. 2018,402 :213-220
[45] Constructing 2D Graphitic carbon nitride Nanosheets/Layered MoS2/Graphene Ternary Nanojunction with Enhanced Photocatalytic Activity. Applied Catalysis B-Environmental. 2018,225 :468-476
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