王超Wang Chao
教授
教授
博士生导师
硕士生导师
入职时间:2015-04-22
所在单位:材料与能源学院
学历:博士
在职信息:在职
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[10] Wang, C.*; Liao, M.; Jiang, Z.; Liang, B.; Weng, J.; Song, Q.; Zhao, M.; Chen, Y.; Lei, L., Sorption-enhanced propane partial oxidation hydrogen production for solid oxide fuel cell (SOFC) applications. Energy 2022, 247. (第一作者).
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[9] Wang, C.*; Jiang, Z.; Song, Q.; Liao, M.; Weng, J.; Gao, R.; Zhao, M.; Chen, Y.; Chen, G., Investigation on hydrogen-rich syngas production from catalytic co-pyrolysis of polyvinyl chloride (PVC) and waste paper blends. Energy 2021, 232. (第一作者).
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[8] Lei, L.; Mo, Y.; Huang, Y.; Qiu, R.; Tian, Z.; Wang, J.; Liu, J.; Chen, Y.; Zhang, J.; Tao, Z.; Liang, B.; Wang, C.*, Revealing and quantifying the role of oxygen-ionic current in proton-conducting solid oxide fuel cells: A modeling study. Energy 2023, 276. (通讯作者).
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[7] Wang, C.*; Liao, M.; Liang, B.; Jiang, Z.; Zhong, W.; Chen, Y.; Luo, X.; Shu, R.; Tian, Z.; Lei, L., Enhancement effect of catalyst support on indirect hydrogen production from propane partial oxidation towards commercial solid oxide fuel cell (SOFC) applications. Applied Energy 2021, 288. (第一作者).
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[6] Liao, M.; Wang, C.*; Chen, Y.; Chen, Y.; Qin, C.; Li, Y., Self-Reconstruction Mechanism of High-Entropy Oxide in Glycerol Steam Reforming: The Key to H2-rich Syngas Production. ACS Catalysis 2025, 15 (6), 4845-4857. (通讯作者).
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[5] Zhong, W.; Wang, C.*; Zhao, H.; Peng, S.; Tian, Z.; Shu, R.; Chen, Y., Synergistic effect of photo-thermal catalytic glycerol reforming hydrogen production over 2D Au/TiO2 nanoflakes. Chemical Engineering Journal 2022, 446. (通讯作者).
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[4] Xu, L.; Wang, L.; Li, Y.; Song, Q.; Tian, Z.; Wang, C.*; Zhao, M.; Gao, N., A novel high-entropy spinel ferrites (CoNiCuZnMg)Fe2O4 catalyst for H2 production via steam reforming of derived volatiles from polypropylene and waste cooking oil. Chemical Engineering Journal 2024, 488. (通讯作者).
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[3] Liao, M.; Liu, W.; Li, C.; Guo, S.; Chen, Y.; Wang, C.*; Chen, Y.; Du, Y., Understandings in surface metal exsolution of NiFeZn ternary alloy/spinel in ethanol steam reforming: The key to hydrogen production. Chemical Engineering Journal 2024, 497. (通讯作者).
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[2] Liao, M.; Qin, C.; Xu, L.; Guo, S.; Wang, C.*; Li, Y.; Liu, W.; Song, Q.; Chen, Y.; Du, Y., Quinary metal oxide NiCoMnCeCaOx nanorod as a multifunctional catalyst towards hydrogen production from ethanol steam reforming: Synergistic effect of polymetallic component. Chemical Engineering Journal 2024, 497. (通讯作者).
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[1] Chen, Y. Y.; Wang, C.*; Liao, M. Z.; Wang, F. L.; Zhao, X.; Fang, R. Q.; Li, Y. W., High-entropy perovskite oxides with Pt nanoclusters: A synergistic platform for photothermal methanol reforming and sustainable hydrogen production. Appl Catal B-Environ 2025, 373.(通讯作者).