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陈庆军
单位:稀土学院(中国科学院赣江创新研究院)
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个人简历 Personal resume
陈庆军,研究员,博士生导师,江西省“双千计划”创新领军人才(青年类)和赣江创新研究院海外高层次人才。研究方向为氢能与燃料电池,包括电解水制氢、氢燃料电池电极催化剂开发及电催化机理、稀土储氢合金材料开发与应用等。主持国家自然科学基金、科技部重点研发计划以及中科院、北京市等省部级科研项目十余个。在Angew. Chem. Int. Ed.,ACS Catal., Chem. Eng. J., Carbon, Green Chem. 等期刊发表论文30余篇,申请发明专利20余项。
 
研究方向 Research direction
1、氢燃料电池、电解水及电催化
2、储氢材料
3、纳米碳催化
 
招生信息 Enrollment information
招收生源需具备化学、材料、催化或冶金等方向扎实的基本功,且积极、刻苦、上进,并具有较强的创新能力和开拓精神。团队将为录取的硕士生和博士生提供一流的科研条件和学生补助。团队将积极推荐优秀毕业生去国外深造。联系方式:qjchen@gia.cas.cn。
 
论文专著 The monograph
1) Recent Advances in Non-Precious Metal Electrocatalysts for Oxygen Reduction in Acidic Media and PEMFCs: An Activity, Stability and Mechanism Study - Green Chemistry - 2021 - available online
2) Development of high stable Pt-based ORR catalyst over Mn modified polyaniline-based carbon nanofiber - New Journal of Chemistry - 2021 - available online
3) Mechanism and microstructural evolution of TiCrVFe hydrogen storage alloys upon de-/hydrogenation - Journal of Alloys and Compounds - 2021 - 877
4) Atomic metal, N, S co-doped 3D porous nano carbons: Highly efficient catalysts for HT-PEMFC - International Journal of Hydrogen Energy - 2021 - 46
5) Development of polyethylenimine (PEI)- impregnated mesoporous carbon spheres for low-concentration CO2 capture - Catalysis Today - 2021 - 369
6) Nitrogen-Doped Carbon-Assisted One-pot Tandem Reaction for Vinyl Chloride Production via Ethylene Oxychlorination - Angewandte Chemie International Edition - 2020 - 59
7) Space-Confined Self-Regulation Mechanism from a Capsule Catalyst to Realize an Ethanol Direct Synthesis Strategy - ACS Catalysis - 2020 - 10
8) Effect of trace potassium on hydrogen adsorption and dissociation on hcp cobalt: A density functional theory study - Surface Science - 2019 - 681
9) Design of ultra-active iron-based Fischer-Tropsch synthesis catalysts over spherical mesoporous carbon with developed porosity - Chemical Engineering Journal - 2018 - 334
10) Nitrogen-rich mesoporous carbon supported iron catalyst with superior activity for Fischer-Tropsch synthesis - Carbon - 2018 - 130
11) Temperature-dependent anti-coking behaviors of highly stable Ni-CaO-ZrO2 nanocomposite catalysts for CO2 reforming of methane - Chemical Engineering Journal - 2017 - 320
12) Potassium adsorption behavior on hcp cobalt as model systems for the Fischer–Tropsch synthesis: a density functional theory study - Physical Chemistry Chemical Physics - 2017 - 19
13) Insights into the promotional roles of palladium in structure and performance of cobalt-based zeolite capsule catalyst for direct synthesis of C5–C11 iso-paraffins from syngas - Journal of Catalysis - 2016 - 344
 
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