论文著作:
[1] L. Han, Y. Dong, H. Zhao, J. Zhang, J. Liu*, C. Zhong, W. Hu, Pt-decorated high entropy FeCoNiMnCr (Oxy) hydroxides as a bifunctional electrocatalyst towards electrochemical water splitting, Science China Materials, 2025, https://doi.org/10.1007/s40843-025-3381-5
[2] X. Han, Z. Cheng, J. Zhang, J. Liu*, C. Zhong, W. Hu, Design of amorphous high-entropy FeCoCrMnBS (Oxy) hydroxides for boosting oxygen evolution reaction, Acta Physico-Chimica Sinica, 41 (2025) 100033.
[3] P. Xu, Q. Zhang, J. Liu*, N. Zhao, W. Hu, C. Zhong*, Rational Design of Electrolyte Additives Enabling Long-Life Aqueous Zn–Ni Batteries with High Current Density and Areal Capacity, ACS Applied Materials & Interfaces, 17 (2025) 13905-13915.
[4] H. Yuan, J. Luan, Q. Zhang, J. Liu*, N. Zhao, W. Hu, C. Zhong*, High hydrophilic/zincophilic interpenetrating double-network hydrogel electrolyte constructing stable organic-inorganic anode interface toward nickel–zinc batteries, Nano Energy, 134 (2025) 110595.
[5] H. Yuan, J. Luan, J. Liu*, C. Zhong*, Hail to Daniell Cell: From Electrometallurgy to Electrochemical Energy Storage, Advanced Functional Materials, 34 (2024) 2400289.
[6] P. Xu, Q. Zhang, J. Liu*, W. Hu, C. Zhong*, The analysis of the overall failure of practical Zn−Ni battery, Chemical Engineering Journal, 500 (2024) 157190.
[7] J. Luan, H. Yuan, J. Liu*, N. Zhao, W. Hu, C. Zhong*, Amorphous AlPO4 Layer Coating Vacuum Thermal Reduced SiO with Fine Silicon Grains to Enhance the Anode Stability, Advanced Science, 11 (2024) 2405116.
[8] Z. Cheng, X. Han, L. Han, J. Zhang, J. Liu*, Z. Wu, C. Zhong, Novel High-Entropy FeCoNiMoZn-Layered Hydroxide as an Efficient Electrocatalyst for the Oxygen Evolution Reaction, Nanomaterials, 14(2024) 889.
[9] Y. Hu, B. Liu, L. Xu, Z. Dong, Y. Wu, J. Liu*, Cheng Zhong*, W. Hu*, High-Throughput Synthesis and Screening of Pt-Based Ternary Electrocatalysts Using a Microfluidic-Based Platform, Acta Physico-Chimica Sinica, 2023, 39, 2209004
[10] Y. Tang, D. Geng, Z. Cheng, X. Han, L. Han, J. Zhang, D. Xia, J. Liu*, A Facile and Surfactant-Free Electrochemical Synthesis of PtIr Nanocubes towards Ammonia Electro-Oxidation, Metals, 2023, 13, 901
[11] J. Liu, Z. Liu, H. Wang, B. Liu, N. Zhao, C. Zhong*, W. Hu*, Designing Nanoporous Coral-Like Pt Nanowires Architecture for Methanol and Ammonia Oxidation Reactions, Advanced Functional Materials, 2022, 32, 2110702.
[12] J. Liu, B. Liu, Y. Wu, X. Chen, J. Zhang, Y. Deng, W. Hu, C. Zhong, Pt monolayers on electrodeposited nanoparticles of different compositions for ammonia electro-oxidation, Catalysts, 9 (2019) 4.
[13] X. Huang, J. Liu*, J. Ding, Y. Deng, W. Hu, C. Zhong*, Toward Flexible and Wearable Zn–Air Batteries from Cotton Textile Waste, ACS Omega, 4 (2019) 19341-19349.
[14] J. Liu, X. Fan, X. Liu, Z. Song, Y. Deng, X. Han, W. Hu, C. Zhong, Synthesis of Cubic-Shaped Pt Particles with (100) Preferential Orientation by a Quick, One-step and Clean Electrochemical Method, ACS Applied Materials & Interfaces, 9 (2017) 18856-18864.
[15] J. Liu, B. Chen, Z. Ni, Y. Deng, X. Han, W. Hu, C. Zhong*, Improving the Electrocatalytic Activity of Pt Monolayer Catalysts for Electrooxidation of Methanol, Ethanol and Ammonia by Tailoring the Surface Morphology of the Supporting Core, ChemElectroChem, 3 (2016) 537-551.
[16] J. Liu, B. Chen, Y. Kou, Z. Liu, X. Chen, Y. Li, Y. Deng, X. Han, W. Hu*, C. Zhong*, Pt-Decorated highly porous flower-like Ni particles with high mass activity for ammonia electro-oxidation, Journal of Materials Chemistry A, 4 (2016) 11060-11068.