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材料与能源学院 School of Materials and Energy
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夏冬生

2023年05月11日

夏冬生博士讲师

电子邮箱dsxia@fosu.edu.cn

研究方向:纳米碳基单原子材料的结构设计及其在能源技术(如氢燃料电池、锌空电池等)、环境修复及医疗健康等领域的应用

 

科研项目

1. 国家自然科学基金青年科学基金项目(22109088),主持,已结题。

2. 中国博士后科学基金面上项目(2020M680545),主持,已结题。

3. 广东省基础与应用基础研究基金:粤佛联合基金地区培育项目(2023A1515140002),主持,在研。

论文成果

1. Dongsheng Xia, Xuan Tang, Sheng Dai,* Rile Ge, Alexander Rykov, Junhu Wang, Tzu-Hsi Huang, Kuan-Wen Wang, Yinping Wei, Kai Zhang, Jia Li, Lin Gan,* Feiyu Kang.* Ultrastable Fe-N-C Fuel Cell Electrocatalysts by Eliminating Non-Coordinating Nitrogen and Regulating Coordination Structures at High Temperatures. Advanced Materials, 2023, 35(5): e2204474.

 

2. Dongsheng Xia, Chenchen Yu, Yinghao Zhao, Yinping Wei, Haiyan Wu, Yongqiang Kang, Jia Li,* Lin Gan,* Feiyu Kang.* Degradation and regeneration of Fe-Nx active sites for the oxygen reduction reaction: the role of surface oxidation, Fe demetallation and local carbon microporosity. Chemical Science, 2021, 12(34):11576-11584.

 

3. Xin Yang,# Dongsheng Xia,# Yongqiang Kang, Hongda Du, Feiyu Kang, Lin Gan,* Jia Li.* Unveiling the Axial Hydroxyl Ligand on Fe-N4-C Electrocatalysts and Its Impact on the pH-Dependent Oxygen Reduction Activities and Poisoning Kinetics. Advanced Science, 2020, 7(12):2000176.

 

4. Dongsheng Xia, Fei Tang , Xiaozhang Yao, Yinping Wei, Yuefei Cui, Miao Dou, Lin Gan,* Feiyu Kang.* Seeded growth of branched iron-nitrogen-doped carbon nanotubes as a high performance and durable non-precious fuel cell cathode. Carbon, 2020, 162:300-307.

 

5. Dongsheng Xia, Xin Yang, Lin Xie, Yinping Wei, Wulv Jiang, Miao Dou, Xuning Li, Jia Li,* Lin Gan,* Feiyu Kang.* Direct Growth of Carbon Nanotubes Doped with Single Atomic Fe-N4 Active Sites and Neighboring Graphitic Nitrogen for Efficient and Stable Oxygen Reduction Electrocatalysis. Advanced Functional Materials, 2019, 29(49):1906174.

 

6. Dongsheng Xia, Ruozheng Wang, Yinping Wei, Lin Gan,* Feiyu Kang.* Melamine-sponge-derived non-precious fuel cell electrocatalyst with hierarchical pores and tunable nitrogen chemical states for exceptional oxygen reduction reaction activity. Materials Today Energy, 2018, 9:271-278.

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