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Huijun Chen(陈惠君)
Huijun Chen(陈惠君)
South China University of Technology
在 mit.edu 的电子邮件经过验证 - 首页
标题
引用次数
引用次数
年份
Anionic defect engineering of transition metal oxides for oxygen reduction and evolution reactions
Y Zhu, X Liu, S Jin, H Chen, W Lee, M Liu, Y Chen
Journal of Materials Chemistry A 7 (11), 5875-5897, 2019
3192019
A highly efficient multi-phase catalyst dramatically enhances the rate of oxygen reduction
Y Chen, YM Choi, S Yoo, Y Ding, R Yan, K Pei, C Qu, L Zhang, I Chang, ...
Joule 2 (5), 938-949, 2018
2962018
Improving the activity for oxygen evolution reaction by tailoring oxygen defects in double perovskite oxides
Y Zhu, L Zhang, B Zhao, H Chen, X Liu, R Zhao, X Wang, J Liu, Y Chen, ...
Advanced Functional Materials 29 (34), 1901783, 2019
2592019
A highly active, CO 2-tolerant electrode for the oxygen reduction reaction
Y Chen, S Yoo, YM Choi, JH Kim, Y Ding, K Pei, R Murphy, Y Zhang, ...
Energy & Environmental Science 11 (9), 2458-2466, 2018
2542018
Defect Engineering in Single-Layer MoS2 Using Heavy Ion Irradiation
Z He, R Zhao, X Chen, H Chen, Y Zhu, H Su, S Huang, J Xue, J Dai, ...
ACS applied materials & interfaces 10 (49), 42524-42533, 2018
1912018
Uncovering the effect of lattice strain and oxygen deficiency on electrocatalytic activity of perovskite cobaltite thin films
X Liu, L Zhang, Y Zheng, Z Guo, Y Zhu, H Chen, F Li, P Liu, B Yu, X Wang, ...
Advanced Science 6 (6), 1801898, 2019
1802019
Tuning proton-coupled electron transfer by crystal orientation for efficient water oxidization on double perovskite oxides
Y Zhu, Z He, YM Choi, H Chen, X Li, B Zhao, Y Yu, H Zhang, ...
Nature communications 11 (1), 4299, 2020
1202020
Progress of exsolved metal nanoparticles on oxides as high performance (electro) catalysts for the conversion of small molecules
X Sun, H Chen, Y Yin, MT Curnan, JW Han, Y Chen, Z Ma
Small 17 (10), 2005383, 2021
902021
Improving the Electrocatalytic Activity and Durability of the La0.6Sr0.4Co0.2Fe0.8O3−δ Cathode by Surface Modification
H Chen, Z Guo, LA Zhang, Y Li, F Li, Y Zhang, Y Chen, X Wang, B Yu, ...
ACS Applied Materials & Interfaces 10 (46), 39785-39793, 2018
902018
Activating lattice oxygen in perovskite oxide by B‐site cation doping for modulated stability and activity at elevated temperatures
H Chen, C Lim, M Zhou, Z He, X Sun, X Li, Y Ye, T Tan, H Zhang, C Yang, ...
Advanced Science 8 (22), 2102713, 2021
842021
Shifting oxygen evolution reaction pathway via activating lattice oxygen in layered perovskite oxide
C Jia, X Xiang, J Zhang, Z He, Z Gong, H Chen, N Zhang, X Wang, S Zhao, ...
Advanced Functional Materials 33 (37), 2301981, 2023
452023
Layered-perovskite oxides with in situ exsolved Co–Fe alloy nanoparticles as highly efficient electrodes for high-temperature carbon dioxide electrolysis
X Sun, Y Ye, M Zhou, H Chen, Y Li, P Chen, D Dong, Y Ling, M Khan, ...
Journal of Materials Chemistry A 10 (5), 2327-2335, 2022
412022
Revealing the effects of oxygen defects on the electro-catalytic activity of nickel oxide
S Jin, Y Zhu, Z He, H Chen, X Liu, F Li, J Liu, M Liu, Y Chen
International Journal of Hydrogen Energy 45 (1), 424-432, 2020
372020
Impact of Strain-Induced Changes in Defect Chemistry on Catalytic Activity of Nd2NiO4+δ Electrodes
F Li, Y Li, H Chen, H Li, Y Zheng, Y Zhang, B Yu, X Wang, J Liu, C Yang, ...
ACS applied materials & interfaces 10 (43), 36926-36932, 2018
372018
Enhancing the intrinsic activity and stability of perovskite cobaltite at elevated temperature through surface stress
M Zhou, J Liu, Y Ye, X Sun, H Chen, D Zhou, Y Yin, N Zhang, Y Ling, ...
Small 17 (45), 2104144, 2021
342021
Electronic Activation during Nanoparticle Exsolution for Enhanced Activity at Elevated Temperature
H Chen, C Lim, T Tan, M Zhou, L Zhang, X Sun, Z He, Y Ye, X Li, H Zhang, ...
ACS nano 17 (11), 10677-10688, 2023
102023
Modulating the water gas shift reaction via strong interfacial interaction between a defective oxide matrix and exsolved metal nanoparticles
H Chen, R Huang, MG Jang, C Lim, D Shin, Q Liu, H Yang, Y Chen, ...
Journal of Materials Chemistry A 10 (47), 24995-25008, 2022
32022
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