江文斌,副教授,硕导,“黄山学者”学术骨干。2021年博士毕业于中国科学技术大学(师从熊宇杰教授、龙冉教授),随后在新加坡科技局、新加坡国立大学从事博士后研究(合作导师:Ye Enyi研究员、Zhao Ming教授),于2026年7月正式加入合肥工业大学。长期致力于金属基纳米材料的原子尺度设计、精准合成及其能源催化应用,近年来以第一/通讯作者(含共同)在J. Am. Chem. Soc.、Nat. Commun.、ACS Nano等国际权威期刊发表论文多篇。热忱欢迎对纳米材料、能源催化、无机与配位化学充满兴趣的本科生、研究生加入,共同探索微观世界里的化学奥秘。
硕士生招生专业:化学(学硕)、材料科学与工程(学硕)
研究方向:
(1)金属纳米晶的原子尺度设计与合成;(2)金属基复合材料的多级结构设计与表界面工程;(3)清洁能源(光、电、力)驱动的催化转化
代表性论文:
1, Jiang, W.;# Zhang, S.;# Yang, J.;# Hu, S.;# Heng, J. Z. X.; Wang, Z.; Yang, W.; Liu, X.; Duan, D.; Yan, Q.; Zhang, M.; Wu, W.-Y.; Hu, J.; Li, J.; Ding, N.; Teo, S. L.; Chan, C. Y.; Lin, M.; Liu, H.; Loh, X. J.; Zhang, Y.-W.;* Liu, Z.;* Ye, E.;* Xiong, Y.;* Zhao, M.*, Phase Regulatable Synthesis of Single-Atom Alloy Nanocages for Efficient Alkaline Hydrogen Evolution, J. Am. Chem. Soc. 2025, 147, 35293-35303
2. Jiang, W.;# Low, J.;# Mao, K.;# Duan, D.; Chen, S.; Liu, W.; Pao, C. W.; Ma, J.; Sang, S.; Shu, C.; Zhan, X.; Qi, Z.; Zhang, H.; Liu, Z.; Wu, X.; Long, R.;* Song, L.; Xiong, Y.*, Pd-Modified ZnO-Au Enabling Alkoxy Intermediates Formation and Dehydrogenation for Photocatalytic Conversion of Methane to Ethylene, J. Am. Chem. Soc., 2021, 143, 269-278.
3. Wang, N.;# Jiang, W.;# Yang, J.; Feng, H.; Zheng, Y.; Wang, S.; Li, B.; Heng, J. Z. X.; Ong, W. C.; TAN, H. R.; Zhang, Y.-W.; Wang, D.;* Ye, E.;* Li, Z.*, Contact-Electro-Catalytic CO2 Reduction from Ambient Air, Nat. Commun., 2024, 15, 5913.
4. Jiang, W.; Low, B. Q. L.; Long, R.; Low, J.; Loh, H.; Tang, K. Y.; Chai, C. H. T.; Zhu, H.; Zhu, H.; Li, Z.;* Loh, X. J.;* Xiong, Y.;* Ye, E.*, Active Site Engineering on Plasmonic Nanostructures for Efficient Photocatalysis. ACS Nano, 2023, 17, 4193-4229.
5. Jiang, W.;# Zhu, H.;# Yang, J.;# Low, B. Q. L.; Wu, W.-Y.; Chen, M.; Ma, J.; Long, R.; Low, J.; Zhu, H.; Heng, J. Z. X.; Tang, K. Y.; Chai, C. H. T.; Lin, M.; Zhu, Q.; Zhang, Y.-W.; Chi, D.; Li, Z.;* Loh, X. J.;* Xiong, Y.;* Ye, E.*, Integration of Single-Atom Catalyst with Z-Scheme Heterojunction for Cascade Charge Transfer Enabling Highly Efficient Piezo-Photocatalysis, Adv. Sci., 2023, 10, 230344.
6. Jiang, W.;# Hu, J.;# Sang, S.; Hu, C.; Wu, D.; Ma, J.; Heng, J. Z. X.; Zhang, M.; Gong, W.; Liu, H.; Lin, M.; Zhao, M.; Long, R.;* Ye, E.;* Xiong, Y*, Tandem Oxygen Activation for Efficient Aerobic Oxidation: The Underlying Function of Oxide in Metal/Oxide Catalysts, ACS Mater. Lett., 2025, 7, 1352-1360.
7. Jiang, W.; Loh, H.; Low, B. Q. L.; Zhu, H.; Low, J.; Heng, J. Z. X.; Tang, K. Y.; Li, Z.;* Loh, X. J.;* Ye, E.;* Xiong, Y.*, Role of Oxygen Vacancy in Metal Oxides for Photocatalytic CO2 Reduction, Appl. Catal. B, 2023, 321, 122079.
8. Low, B. Q. L.;# Jiang, W.;#,* Yang, J.: Zhang, M.; Wu, X.; Zhu, H.; Zhu, H.; Heng, J. Z. X.; Tang, K. Y.; Wu, W.-Y.; Cao, X.; Koh, X. Q.; Chai, C. H. T.; Chan, C. Y.; Zhu, Q.; Bosman, M.; Zhang, Y.-W.; Zhao, M.; Li, Z.;* Loh, X. J.;* Xiong, Y.;* Ye, E.*, 2D/2D Heterojunction of BiOBr/BiOI Nanosheets for In Situ H2O2 Production and Activation toward Efficient Photocatalytic Wastewater Treatment, Small Method, 2024, 8, 2301368.
9. Wang, N.; Feng, H.; Yang, J.; Pan, J. H.; Ye, E.; Jiang, W.;* Zhang, Y.-W.; Wang, Z. L.; Loh, X. J.;* Li, Z.*, Boosted contact-electro-catalytic CO2 to methanol enabled by a built‐in electric field design, Nano Energy, 2026, 152, 111883.
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