Abhishek Dutta Chowdhury

2025-11-05  点击:[]

Abhishek Dutta Chowdhury

特聘教授,博导。

联系方式:abhishek@wust.edu.cn

课题组主页:https://www.enecat.com/


教育与研究经历

印度Jadavpur University(贾达夫普耳大学)化学学士(2002-2005)

印度Jadavpur University(贾达夫普耳大学)化学硕士(2005-2007)

Indian Institute of Technology (IIT)-Bombay(印度理工学院-孟买)化学博士(2008-2012)

德国Leibniz Institute for Catalysis-Rostock(罗斯托克莱布尼茨催化研究所)、荷兰Utrecht University(乌得勒支大学),沙特King Abdullah University of Science and Technology (阿卜杜拉国王科技大学)博士后(2013-2019)

武汉大学特聘研究员(2019-2025)

武汉科技大学化学与化工学院特聘教授(2025-至今)。


课题组负责人已在Chemical Reviews, Chemical Society Reviews, Nature Materials, Nature Catalysis, Angewandte Chemie International Edition, Nature Communications, ACS Nano, ACS Catalysis, Chem Catalysis, Chemical Engineering Journal, CCS Chemistry, Chemical Science, Journal of Catalysis等高影响力国际期刊上发表SCI论文100余篇。他获得了国家自然科学基金“外国青年学者基金”与“外国优秀青年学者基金”系列资助,以及“欧盟玛丽·居里学者基金(Marie Skłodowska-Curie Fellowship)”和“德国DAAD–Leibniz博士后基金”。他还被英国皇家化学会(RSC)旗下两本期刊Inorganic Chemistry FrontiersCatalysis Science & Technology评选为“新锐科学家(Emerging Investigator)”。目前担任Elsevier旗下两本国际SCI期刊Journal of CatalysisMaterials Today Chemistry的编委。


主持科研(人才)项目:

1. 国家自然科学基金面上项目(基于金属/分子筛双功能催化剂的CO2改性费托反应机制研究,22572150,2026-2029),在研

2. 国家自然科学基金外国优秀青年学者研究基金项目(Integrating CO2 Capture and Conversion Processes to Empower Power-to-Liquid Initiatives,22350610243,2024-2025),在研

3. 国家自然科学基金外国青年学者研究基金项目(Interrogating Reaction Mechanisms for the Pursuit of New Chemical Technology to Produce Gasoline Fuel from Carbon Dioxide and Methanol, 22050410276,2021-2022), 结题

4. 沙特阿卜杜拉国王科技大学第九轮竞争性研究资助项目(Next generation catalysts for CO2-derived methanol conversion to valuable Hydrocarbons,2021-2024 ),结题

5. 瑞士Omya 国际公司横向合作项目(Characterization and evaluation of the Samples,2021-2022),结题in various organic transformations performed in liquid and/or gas phase)

6. 沙特阿拉伯教育部基金项目(Identifying new reaction routes for the valorization of CO2-derived methanol to fuel and chemicals through advanced spectroscopy,2021-2022),结题


研究方向:

课题组致力于研究以多相催化技术实现小分子(CH3OH、CO2等)及大分子(原油、生物质、塑料等)碳资源的转化增值。课题组将催化剂构-效关系、工艺优化与先进光谱技术研究相整合,旨在开发高效且可持续的催化体系。

我们诚邀积极进取的学生与研究人员,以及来自学术界和工业界的合作伙伴加入我们,共同以扎实的机理研究和创新的材料设计推动催化科学前沿发展,为更清洁的能源、更可持续的化学品生产以及沸石催化技术的发展贡献力量!

(分子筛在CO2/CO加氢反应中的“描述符”作用,Nat. Commun. 2021, 12, 5914)

(分子筛催化甲醇制烃反应机理研究:Angew. Chem. Int. Ed. 2023, 62, e202303124)

(分子筛催化乙醇制烃反应机理研究:Angew. Chem. Int. Ed. 2019, 58, 3908 –3912)


代表性论文节选):

1. T. Liu#, Z. Liu#, S. Jiang, P. Peng, Z. Liu, A. D. Chowdhury*, G. Liu*, Selectivity control by zeolite during the methanol-mediated CO2 hydrogenation processes. Chem. Soc. Rev. 2025, 54, 2726.

2. X. Gong#, S. Jiang#, A. Dikhtiarenko, S. A. F. Nastase, E. A. Hamad, Y. Ye, H. Zhou, X. You, R. Khairova, J. Patarroyo, L. Cavallo, J. Gascon*, A. D. Chowdhury*, “The Paradoxical Influence of Hydrothermally Treated Zeolites on the Hydrocarbon Pool Mechanism.” Angew. Chem. Int. Ed. 2024, 64, e202414724.

3. X. Zhang, X. Gong, E. Abou-Hamad, H. Zhou, X. You, J. Gascon*, A. D. Chowdhury*, Selectivity Descriptors of Methanol-to-Aromatics Process over 3-Dimensional Zeolites. Angew. Chem. Int. Ed. 2024, 63, e202411197.

4. H. Zhou, X. Gong, E. Abou-Hamad, Y. Ye, X. Zhang, P. Ma, J. Gascon*, A. D. Chowdhury*, Tracking the Impact of Koch-Carbonylated Organics During the Zeolite ZSM-5 Catalyzed Methanol-to-Hydrocarbons Process. Angew. Chem. Int. Ed. 2024, 63, e202318250.

5. X. Zhang, A. D. Chowdhury*, A catalyst for low-temperature CO2 activation. Nat. Mater. 2023, 22, 669–670.

6. Y. Ye, E. Abou-Hamad, X. Gong, T. B. Shoinkhorova, A. Dokania, J. Gascon*, A. D. Chowdhury*, Mapping the Methanol-to-Gasoline Process Over Zeolite Beta. Angew. Chem. Int. Ed. 2023, 62, e202303124.

7. X. Gong, M. Çağlayan, Y. Ye, K. Liu, J. Gascon*, A. D. Chowdhury*, First-Generation Organic Reaction Intermediates in Zeolite Chemistry and Catalysis, Chem. Rev. 2022, 122, 14275-14345.

8. X. Gong, A. Ramirez, E. Abou-Hamad, T. B. Shoinkhorova, M. Çağlayan, Yiru Ye, W. Wang, N. Wehbe, R. Khairova, A. D. Chowdhury*, J. Gascon*, Illustrating the overall reaction network of the synthesis-gas-to-hydrocarbons process over iron-zeolite bifunctional catalysis, Chem Catal. 2022, 2, 2328-2345.

9. A. Ramirez, X. Gong, M. Caglayan, S. Nastase, E. Abou-Hamad, L. Gevers, L. Cavallo, A. D. Chowdhury*, J. Gascon*, Selectivity descriptors for the direct hydrogenation of CO2 to hydrocarbons during zeolite-mediated bifunctional catalysis. Nat. Commun. 2021, 12, 5914.

10. I. Yarulina#, A. D. Chowdhury#, F. Meirer, B. Weckhuysen*, J. Gascon*, Recent trends and fundamental insights in the methanol-to-hydrocarbons process. Nat Catal. 2018, 1, 398–411 .

11. A. D. Chowdhury, K. Houben, G. Whiting, S. Chung, M. Baldus, B. Wechhuysen*, Electrophilic aromatic substitution over zeolites generates Wheland-type reaction intermediates. Nat. Catal. 2018, 1, 23–31.

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