总体情况
论著信息及引用数据
Google Scholar:https://scholar.google.com.hk/citations?hl=zh-CN&user=3DRmr3UAAAAJ
Web of Knowledge:
10篇代表作(*表示通讯作者)
[1]Jiaxu Zhang1, Changhong Wang1, Matthew Zheng, Minghao Ye, Huiyu Zhai, Ju Li, Gangjian Tan*, Xinfeng Tang*, Xueliang Sun*. Rational Design of Air-Stable and Intact Anode-Electrolyte Interface for Garnet-type Solid-State Batteries. Nano Energy,2022, 102, 107672.
[2]Jiaxu Zhang, Ruohan Yu, Jun Li, Huiyu Zhai, Gangjian Tan*, Xinfeng Tang*, Transformation of Undesired Li2CO3 into Lithiophilic Layer Via Double Replacement Reaction for Garnet Electrolyte Engineering. Energy & Environmental Materials,2021, 5, 3, 962-968.
[3]Jiaxu Zhang, Jun Li, Huiyu Zhai, Gangjian Tan*, Xinfeng Tang*, One-Step Processing of Soft Electrolyte/Metallic Lithium Interface for High-Performance Solid-State Lithium Batteries. ACS Apply Energy Materials.2020, 3, 7, 6139–6145.
[4]Jiaxu Zhang, Wen Luo*, Tengfei Xiong, Ruohan Yu, Peijie Wu, Jiexin Zhu, Yuhang Dai, Liqiang Mai*, Carboxyl functionalized carbon incorporation of stacked ultrathin NiO nanosheets: topological construction and superior lithium storage, Nanoscale,2019, 11, 7588.
[5] Jun Li,Jiaxu Zhang, Huiyu Zhai, Xinfeng Tang, Gangjian Tan, Rapid synthesis of garnet-type Li7La3Zr2O12 solid electrolyte with superior electrochemical performance. Journal of the European Ceramic Society,2021, 42, 1568-1575.
[6] Shiyi Chen,Jiaxu Zhang, Ruoyu Zhan, Gangjian Tan, Xianli Su, Xinfeng Tang, Copper Ion Chemistry in a new rechargeable all-solid-state copper-ion battery. Journal of Solid State Chemistry,2021, 298, 122112.
[7] Jun Li, Hao Luo, Keke Liu,Jiaxu Zhang, Huiyu Zhai, Xianli Su, Jinsong Wu, Xinfeng Tang, Gangjian Tan. Excellent Stability of Ga-Doped Garnet Electrolyte against Li Metal Anode via Eliminating LiGaO2 Precipitates for Advanced All-Solid-State Batteries[J]. ACS Applied Materials & Interfaces,2023, 15 (5): 7165-7174.
[8] Jinchang Sun, Chenghao Xie, Wenjun Cui, Fan Yan, Jun Li,Jiaxu Zhang, Xiahan Sang, Xinfeng Tang, Gangjian Tan. Defect Chemistry Engineering Promotes the Dopability of Cu for Extraordinary Thermoelectric Performance of Hole-doped PbSe with Resonant States[J]. Chemistry of Materials.2023, 35 (11), 4366-4374
[9] Pushun Lu, Zhimin Zhou, Zuxiang Xiao, Jiaze Lu,Jiaxu Zhang, Guantai Hu, Wenlin Yan, Shengjie Xia, Shutao Zhang, Ziqing Wang, Hong Li, Changhong Wang, Fan Wu, Xueliang Sun. Joule.2024, in press