[1] |
Dan WANG, Xian-Biao HOU, Xing-Kun WANG, Zhi-Cheng LIU, Huan-Lei WANG, Ming-Hua HUANG.
Research Progress of Carbon‑Encapsulated Iron‑Based Nanoparticles Electrocatalysts for Zinc‑Air Batteries
[J]. Chinese Journal of Applied Chemistry, 2022, 39(10): 1488-1500.
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[2] |
He LI, Gong LI, Xue GONG, Ming-Bo RUAN, Ce HAN, Ping SONG, Wei-Lin XU.
Research on Performance Decay Mechanism of Pt/C Catalyst in Long‑Term ORR Test
[J]. Chinese Journal of Applied Chemistry, 2022, 39(10): 1564-1571.
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[3] |
LI Gong, JIN Long-Yi, YAO Peng-Fei, LIU Cong, XU Wei-Lin.
Controllability Design of High Performance Oxygen Reduction Catalysts Supported by Platinum Nanoparticles Loaded on Mesoporous Carbon
[J]. Chinese Journal of Applied Chemistry, 2021, 38(12): 1639-1646.
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[4] |
WEI Zhenye, MENG Junling, WANG Haocong, ZHANG Wenwen, LIU Xiaojuan, MENG Jian.
Improving the Electrocatalytic Activity of La2NiO4+δ Cathode by Surface Modification with Conformal Heterojunction
[J]. Chinese Journal of Applied Chemistry, 2020, 37(8): 939-951.
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[5] |
CHEN Fengying, LI Kezhi, HU Guangzhi.
Catalytic Oxygen Reduction Property of Carbon Nanotubes Supported Tetra-nitro-metal Phthalocyanines-MnO2 Dual Catalysts
[J]. Chinese Journal of Applied Chemistry, 2019, 36(1): 97-106.
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[6] |
CHEN Si,SUN Lizhen,SHU Xinxin,ZHANG Jintao.
Graphene-based Catalysts for Efficient Electrocatalytic Applications
[J]. Chinese Journal of Applied Chemistry, 2018, 35(3): 272-285.
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[7] |
MA Juan1,3, SUI Qi2, LU Tianhong2*.
Complexing Self-reduction Synthesis of Silver Nanoparticles and Their Electrocatalytic Performance
[J]. Chinese Journal of Applied Chemistry, 2014, 31(11): 1330-1335.
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[8] |
JI Yigang1, YIN Yajing1, GUO Qi1, SI Nan1, MA Juan2*, LU Tianhon3.
Preparation of Carbon Nanotubes Supported Pd-Au Catalyst and Their Electrocatalytic Activity for Formic Acid Oxidation
[J]. Chinese Journal of Applied Chemistry, 2014, 31(01): 69-75.
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[9] |
WANG Xiuyan1, ZHAO Xueping2, MA Shuhua2*.
Preparation of Silicotungstic Acid Modified Carbon Supported Pd Catalyst by Impregnation Method and Its Electrocatalytic Performance for Formic Acid Oxidation
[J]. Chinese Journal of Applied Chemistry, 2013, 30(12): 1470-1475.
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[10] |
WEI Hua, LU Zhenjiang, BAO Shujuan*, JI Chenchen, CAI Changjun, YANG Fan.
Functionalized Graphene Supported Pd Catalyst for Catalytic Oxidation of Formic Acid
[J]. Chinese Journal of Applied Chemistry, 2013, 30(11): 1354-1360.
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[11] |
KULISONG Hayierbiek, ZENG Han*.
Direct Electrochemical Behavior and Sensing Performance of Nitrogen-Doped Meso-Porous Carbon and Chitosan Composite Immobilized with Laccase Modified Electrode
[J]. Chinese Journal of Applied Chemistry, 2013, 30(10): 1194-1201.
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[12] |
TANG Meixiang, YI Qingfeng*.
Synthesis and Electrocatalysis Activity of Silver-Tin Bimetallic Catalysts for Oxygen Reduction Reaction
[J]. Chinese Journal of Applied Chemistry, 2013, 30(10): 1176-1181.
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[13] |
ZHAO Shuxian, ZENG Han*.
Kinetic Analysis of Oxygen Reduction Reaction Catalyzed by Multi-copper Oxidase in Presence of Electron Relay
[J]. Chinese Journal of Applied Chemistry, 2013, 30(09): 1073-1081.
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[14] |
ZENG Han*, ZHAO Shuxian, GONG Lanxin, SU Zhi.
Catalysis of Poly Benzimidazole and Laccase Composite Modified Electrode for Oxygen Reduction Reaction Without Electron Transfer Mediators
[J]. Chinese Journal of Applied Chemistry, 2013, 30(04): 436-443.
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[15] |
GUO Qi1, LI Huanzhi2, JI Yun2, LU Tianhong2*.
Effect of Sodium Metavanadate on Electrocatalytic Performance of Carbon Supported Pd Catalyst for Formic Acid Oxidation
[J]. Chinese Journal of Applied Chemistry, 2013, 30(02): 191-195.
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