人才队伍
肖梅玲 研究员

学历:博士研究生

学科:物理化学

电话:0431-85262147

邮箱:mlxiao@ciac.ac.cn

地址:吉林省长春市人民大街5625号

邮编:130022

简历介绍

  中国科学院长春应用化学研究所电分析化学国家重点实验室能源转换与电催化课题组组长,研究员,博士生导师。2017年在中国科学院长春应用化学研究所取得博士学位,2017年9月至2021年在加拿大滑铁卢大学陈忠伟院士课题组从事博士后研究,聚焦于氢-氧燃料电池、水电解池、二氧化碳电解池关键材料的原子层级设计与催化机制理解。2021年加入中国科学院长春应用化学研究所电分析化学国家重点实验室,聘为独立课题组研究员。迄今为止,发表SCI论文51篇,期刊包括J. Am. Chem. Soc., Angew. Chem., Adv. Mater., Adv. Energy. Mater., ACS Catalysis, Nano Energy, J. Mater. Chem. A., Chem. Commum.等, SCI他引2264余次,H因子24。

代表性成果

代表论文:

1.Meiling Xiao, et al., 3d-Orbital Occupancy Regulated Ir-Co Atomic Pair Toward Superior Bifunctional Oxygen Electrocatalysis, ACS Catalysis 2021, 11, 8837-8846 (IF=12.35)

2.Meiling Xiao, et al., Preferentially Engineering FeN4 Edge Sites onto Graphitic Nanosheets for Highly Active and Durable Oxygen Electrocatalysis in Rechargeable Zn–Air Batteries. Advanced Materials. 2020, 32, 2004900. (IF=27.40)

3.Meiling Xiao, et al., A single‐atom iridium heterogeneous catalyst in oxygen reduction reaction. Angewandte Chemie International Edition. 2019, 131: 9742 – 9747. (IF=12.96)

4.Meiling Xiao, et al., Climbing the apex of the ORR volcano plot via binuclear site construction: electronic and geometric engineering. Journal of the American Chemical Society. 2019, 141: 17763–17770. (IF=14.61)

5.Meiling Xiao, et al., Engineering energy level of metal center: Ru single-atom site for efficient and durable oxygen reduction catalysis. Journal of the American Chemical Society. 2019, 141, 50, 19800–19806 (IF=14.61).

6.Meiling Xiao, et al., Identification of binuclear Co2N5 active sites for oxygen reduction reaction with more than one magnitude higher activity than single atom CoN4 site. Nano Energy. 2018,46, 396-403 (IF=16.60)

7.Meiling Xiao, et al., Microporous framework induced synthesis of single-atom dispersed Fe-NC acidic ORR catalyst and its in situ reduced Fe-N4 active site identification revealed by X-ray absorption spectroscopy. ACS Catalysis. 2018, 8: 2824–2832. (IF=12.35)

8.Meiling Xiao, et al., Meso/macroporous nitrogen‐doped carbon architectures with iron carbide encapsulated in graphitic layers as an efficient and robust catalyst for the oxygen reduction reaction in both acidic and alkaline solutions. Advanced Materials. 2015, 27: 2521-2527. (IF=27.40)

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