陈俊翔 副研究员 福建省 研究领域: 新材料,石油炼制,石油化工,精细化工 研究方向: 理论与计算电催化 所在单位: 中国科学院福建物质结构研究所

基本信息

所在单位:
中国科学院福建物质结构研究所
单位类型:
科研机构
职称:
副研究员
出生年份:
1988-01-01
专家介绍:
男,1988年出生于福建福州,博士,副研究员,硕士生导师。于2010年,2012年和2016年分别获得武汉大学学士,硕士和博士学位(导师:陈胜利教授)。研究方向为理论与计算电催化。 致力于从第一性原理出发,发展理论计算手段,以最大限度模拟催化界面,从而解决电催化的根源问题。目前主要的学术贡献为:(i)提出了铂基氧电催化还原反应的界面电势依赖的活性与非活性占位相变图像,并由此解释了氧还原反应过电势的来源;(ii)更改“能量跨度”为电催化计算氢电极方法中的活性决定项,并提出了电催化活性火山曲线的电势依赖性这一本质属性。目前主持国家自然科学基金一项(青年科学基金项目)。在包括Angew Chem Int Ed, Energy & environment science, Advanced Energy Materials, Advanced functional Materials, ACS catalysis, Nano energy, Applied catalysis B, Chemistry of materials等刊物上发表SCI论文30余篇。

科研能力

研究领域:
新材料,石油炼制,石油化工,精细化工
研究方向:
理论与计算电催化
英文标签:
Mortality;Electrocatalysis;Cardiovascular Disease;Lifestyle;Type 2 Diabetes;Diabetes;Hypertension;Meta-analysis;Cohort Study;Oxygen Evolution Reaction
相关文献:
1. Chen, J., Chen, Y., Li, P., Wen, Z., & Chen, S*. Energetic span as a rate-determining term for electrocatalytic volcanos. ACS Catalysis, 2018, 8(11), 10590-10598.
2. Chen, J., Fang, L., Luo, S., Liu, Y., & Chen, S*. Electrocatalytic O2 reduction on Pt: multiple roles of oxygenated adsorbates, nature of active sites, and origin of overpotential. The Journal of Physical Chemistry C, 2017, 121(11), 6209-6217.
3. Chen, J., Luo, S., Liu, Y., & Chen, S*. Theoretical Analysis of Electrochemical Formation and Phase Transition of Oxygenated Adsorbates on Pt (111). ACS applied materials & interfaces, 2016, 8(31), 20448-20458.
4. Chen, H.#, Chen, J.#, Si, J., Hou, Y.*, Zheng, Q., Yang, B., Li, Z., Gao, L., Lei, L. Wen, Z.*, Feng, X.* Ultrathin tin monosulfide nanosheets with the exposed (001) plane for efficient electrocatalytic conversion of CO2 into formate. Chem. Sci., 2020, 11, 3952. (Co-first)
5. Zhang, M.#, Chen, J.#, Li, H., Cai, P., Li, Y., & Wen, Z.* Ru-RuO2/CNT hybrids as high-activity pH-universal electrocatalysts for water splitting within 0.73 V in an asymmetric-electrolyte electrolyzer. Nano Energy, 2019, 61, 576-583. (co-first) 
6. Ou, L.*, Chen, J.*, Chen, Y., Jin, J. Mechanistic Study of Pt-Catalyzed Electrooxidation of HCOOH in Acid Medium: Kinetic Considerations on the Effect of Solvation. The Journal of Physical Chemistry C, 2018, 122(43), 24871-24884.
7. He, H#., Chen, J.#, Zhang, D., Li, F., Chen, X., Chen, Y., Lv, X*. Modulating the electrocatalytic performance of palladium with the electronic metal–support interaction: a case study on oxygen evolution reaction. ACS Catalysis, 2018, 8(7), 6617-6626. (co-first)
8. Wang, Y#., Chen, J.#, Wang, G#., Li, Y., Wen, Z*. Perfluorinated covalent triazine framework derived hybrids for the highly selective electroconversion of carbon dioxide into methane. Angewandte Chemie, 2018, 130(40), 13304-13308. (co-first)
9. Li, Y.#, Chen, J.#, Cai, P., Wen, Z*. An electrochemically neutralized energy-assisted low-cost acid-alkaline electrolyzer for energy-saving electrolysis hydrogen generation. Journal of Materials Chemistry A, 2018, 6(12), 4948-4954. (co-first)
论文著作:
1. Direct Z-scheme G-C3n4/wo3 Photocatalyst with Atomically Defined Junction for H2 Production
Weilai Yu; Junxiang Chen; Tongtong Shang; Linfeng Chen; Lin Gu; Tianyou Peng
Applied Catalysis B Environment and Energy, 2017

2. Oxygen‐Containing Amorphous Cobalt Sulfide Porous Nanocubes As High‐Activity Electrocatalysts for the Oxygen Evolution Reaction in an Alkaline/Neutral Medium
Pingwei Cai; Junheng Huang; Junxiang Chen; Zhenhai Wen
Angewandte Chemie International Edition, 2017

3. Electrocatalysis For Co2 Conversion: From Fundamentals To Value-Added Products
Genxiang Wang; Junxiang Chen; Yichun Ding; Pingwei Cai; Luocai Yi; Yan Li; Chaoyang Tu; Yang Hou; Zhenhai Wen; Liming Dai
CHEMICAL SOCIETY REVIEWS, 2021

4. N-doped Porous Carbon Nanosheets As Ph-Universal ORR Electrocatalyst in Various Fuel Cell Devices
Liangzhen Liu; Guang Zeng; Junxiang Chen; Linlin Bi; Liming Dai; Zhenhai Wen
Nano Energy, 2018

5. Fast Redox Kinetics in Bi‐Heteroatom Doped 3D Porous Carbon Nanosheets for High‐Performance Hybrid Potassium‐Ion Battery Capacitors
Xiang Hu; Yangjie Liu; Junxiang Chen; Luocai Yi; Hongbing Zhan; Zhenhai Wen
Advanced energy materials, 2019

6. An Electrochemically Neutralized Energy-Assisted Low-Cost Acid-Alkaline Electrolyzer for Energy-Saving Electrolysis Hydrogen Generation
Yan Li; Junxiang Chen; Pingwei Cai; Zhenhai Wen
JOURNAL OF MATERIALS CHEMISTRY A, 2018

7. High Entropy Alloy Electrocatalytic Electrode Toward Alkaline Glycerol Valorization Coupling with Acidic Hydrogen Production
Linfeng Fan; Yaxin Ji; Genxiang Wang; Junxiang Chen; Kai Chen; Xi Liu; Zhenhai Wen
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2022

8. Hierarchical Porous Carbon Nanofibers for Compatible Anode and Cathode of Potassium-Ion Hybrid Capacitor
Xiang Hu; Guobao Zhong; Junwei Li; Yangjie Liu; Jun Yuan; Junxiang Chen; Hongbing Zhan; Zhenhai Wen
ENERGY & ENVIRONMENTAL SCIENCE, 2020

9. Density-Functional-Theory Calculation Analysis of Active Sites for Four-Electron Reduction of O-2 on Fe/N-Doped Graphene
Wei Liang; Junxiang Chen; Yuwen Liu; Shengli Chen
ACS CATALYSIS, 2014

10. Combined Lifestyle Factors and Risk of Incident Type 2 Diabetes and Prognosis among Individuals with Type 2 Diabetes: a Systematic Review and Meta-Analysis of Prospective Cohort Studies
Yanbo Zhang; Xiong-Fei Pan; Junxiang Chen; Lu Xia; Anlan Cao; Yuge Zhang; Jing Wang; Huiqi Li; Kun Yang; Kunquan Guo; Meian He; An Pan
Diabetologia, 2020
在线客服 在线留言 小程序 公众号 4001789689 <<显示