郑加贤
发布人:袁占辉  发布时间:2025-01-07   浏览次数:



姓名:郑加贤

邮箱:zjxcms@fafu.edu.cn

博士、讲师、福建省高层次C类人才

学习经历:

2015.09-2019.06 福建农林大学,材料工程学院,学士

2019.09-2024.12 厦门大学,化学化工学院,博士(导师:梁汉锋、王周成);

主要研究方向:

二次水系电池正、负极及粘结剂材料设计,太阳能蒸发器,光/电催化木质素高值化利用等方向。

代表性成果:

[1] J. Zheng, X. Liu, Y. Zheng, A. N. Gandi, X. Kuai, Z. Wang, Y. Zhu, Z. Zhuang, H. Liang, AgxZny Protective Coatings with Selective Zn2+/H+ Binding Enable Reversible Zn Anodes, Nano Lett., 2023, 23, 6156-6163. (IF=10.8, 1区)

[2] J. Zheng, Y. Wu, H. Xie, Y. Zeng, W. Liu, A. Naidu Gandi, Z. Qi, Z. Wang, H. Liang, In Situ Alloying Sites Anchored on an Amorphous Aluminum Nitride Matrix for Crystallographic Reorientation of Zinc Deposits, ACS Nano, 2023, 17, 337-345. (IF=18.05, 1区, 封面论文)

[3] J. Zheng, Z. Huang, Y. Zeng, W. Liu, B. Wei, Z. Qi, Z. Wang, C. Xia, H. Liang, Electrostatic Shielding Regulation of Magnetron Sputtered Al-Based Alloy Protective Coatings Enables Highly Reversible Zinc Anodes, Nano Lett., 2022, 22, 1017-1023. (IF=12.26, 1区, 高被引)

[4] J. Zheng, Z. Cao, F. Ming, H. Liang, Z. Qi, W. Liu, C. Xia, C. Chen, L. Cavallo, Z. Wang, H. N. Alshareef, Preferred Orientation of TiN Coatings Enables Stable Zinc Anodes, ACS Energy Lett., 2022, 7, 197-203. (IF=23.1, 1区)

[5] J. Zheng, G. Zhu, X. Liu, H. Xie, Y. Lin, Y. Zeng, Y. Zhang, A. N. Gandi, Z. Qi, Z. Wang, H. Liang, Simultaneous Dangling Bond and Zincophilic Site Engineering of SiNx Protective Coatings Towards Stable Zinc Anodes, ACS Energy Lett., 2022, 7, 4443-4450. (IF=23.99, 1区)

[6] J. Zheng, Z. Huang, F. Ming, Y. Zeng, B. Wei, Q. Jiang, Z. Qi, Z. Wang, H. Liang, Surface and Interface Engineering of Zn Anodes in Aqueous Rechargeable Zn-Ion Batteries. Small, 2022, 18, 2200006. (IF=13.281, 1区, 高被引)

[7] B. Wei,1 J. Zheng,1 Abhishek, X. Liu, J. Wu, Z. Qi, Z. Hou, R. Wang, J. Ma, A. N. Gandi, Z. Wang, H. Liang, Design Principle of Insulating Surface Protective Layers for Metallic Zn Anodes: A Case Study of ZrO2. Adv. Energy Mater., 2024, 14, 2401018. (共一, IF=27.8, 1区, 封面论文)

[8] Y. Zeng,1 J. Zheng,1 H. Zhang, F. Yao, D. Deng, Q. Wu, P. R. Makgwane, H. Liang, Surface Reconstruction Regulation of Co3N through Heterostructure Engineering toward Efficient Oxygen Evolution Reaction. Small, 2024, 20, 2406465. (共一, IF=13.0, 1区)

[9] 刘新,1 郑加贤,1 郑宇国, 王周成, 梁汉锋*. 水系锌电池正极表界面调控. 中国科学:化学, 2023, 59, 108-117. (共一)

[10] Y. Zeng, J. Liang, J. Zheng, Z. Huang, X. Zhang, G. Zhu, Z. Wang, H. Liang, Y. Zhang, Recent Progress in Advanced Flexible Zinc Ion Battery Design. Appl. Phys. Rev., 2022, 9, 021304. (IF=19.52, 1区)

[11] Y. Zeng, M. Zhao, Z. Huang, W. Zhu, J. Zheng, Q. Jiang, Z. Wang, H. Liang, Surface Reconstruction of Water Splitting Electrocatalysts, Adv. Energy Mater., 2022, 12, 2201713. (IF=29.7, 1区, 封面论文, 高被引, 热点论文)

[12] R. Wang, Q. Wu, M. Wu, J. Zheng, H. Liang*, et al., Nano Res., 2022, 15, 7227–7233. (IF=10.26, 1区)

[13] H. Zhou, Z. Zheng, H. Shi, J. Zheng, H. Liang*, et al., Bimetallic Nitride TiVN Hollow Nanotubes for High-Performance Zinc-Ion Hybrid Supercapacitors, Chem. Mater., 2024, 36, 4502-4510. (IF=9.56, 2区)