王昱沆

王昱沆,蘇州大學教授,博士生導師。

基本介紹

  • 中文名:王昱沆
  • 職業:教師
人物經歷,研究方向,主要成果,代表性論文,

人物經歷

王昱沆,蘇州大學功能納米與軟物質研究院青年特聘教授,2012年本科畢業於中國西北大學化學與材料科學學院;2017年獲得復旦大學博士學位,導師為鄭耿鋒教授;2017年至2020年於加拿大多倫多大學電子與計算機工程系從事博士後研究,合作導師為Edward H. Sargent教授。

研究方向

致力於開發面向可再生燃料生產的碳中和的電化學裝置。具體研究方向包括以下3個方面:
1. 電催化過程機理的研究:通過合作利用先進的原位表征技術和機理研究手段,進而更好、更動態地了解電催化反應過程;
2. 催化劑材料設計:我們的團隊利用新的機理髮現來合理設計具有獨特成分、電子結構和表面的催化劑;
3. 催化反應器設計:我們更致力於通過電催化器件的設計和最佳化,將催化性能推向滿足實際套用需求的水平。

主要成果

近年來主要從事面向可再生燃料電催化生產的催化劑與器件設計。具體研究方向包括電解水制氫、二氧化碳電催化還原與電化學合成氨。已在國際學術期刊,包括Nature、Science、Nature Catalysis、Nature Communications、Journal of the American Chemical Society、Nano Letters、Advanced Materials、Advanced Energy Materials等,發表SCI論文40餘篇,其中以第一作者發表論文11篇。曾先後獲得陶氏化學可持續發展創新獎、博士生國家獎學金、2016 MRS graduate student travel grant等獎項。

代表性論文

1. Y. Wang, J. Liu, G. Zheng*. Designing copper-based catalysts for efficient carbon doxide electroreduction. Adv. Mater. 33, 2005798(2020)
2. X. Lv, L. Shang, S. Zhou*, S. Li, Y. Wang, Z. Wang, T.-K. Sham, C. Peng, G. Zheng*. Electron-deficient Cu sites on Cu3Ag1 catalyst promoting CO2 electroreduction to alcohols. Ad. Energy Mater. 10, 2001987 (2020).
3. A. Ozden, F. Li, F. Pelayo García de Arquer, A. Rosas-Hernández, A. Thevenon, Y. Wang, S.-F. Hung, X. Wang, B. Chen, J. Li, J. Wicks, M. Luo, Z. Wang, T. Agapie*, J. C. Peters*, E. H. Sargent*, D. Sinton*. High-rate and efficient ethylene electrosynthesis using a catalyst:promoter:transport layer. ACS Energy Lett. 5, 2811-2818 (2020).
4. J. Li, A. Xu, F. Li, Z. Wang, C. Zou, C. M. Gabardo, Y. Wang, A. Ozden, Y. Xu, D.-H. Nam, Y. Lum, J. Wicks, B. Chen, Z. Wang, J. Chen, Y. Wen, T.-T. Zhuang, M. Luo, X. Du, T.-K. Sham, B. Zhang, E. H. Sargent*, D. Sinton*. Enhanced multi-carbon alcohol electroproduction from CO via modulated hydrogen adsorption. Nat. Commun. 11, 3685 (2020).
5. W. R. Leow, Y. Lum, A. Ozden, Y. Wang, D.-H. Nam, B. Chen, J. Wicks, T.-T. Zhuang, F. Li, D. Sinton, E. H. Sargent*. Chloride-mediated selective electrosynthesis of ethylene and propylene oxides at high current density. Science 368, 1228-1233 (2020).
6. Y. Wang, A. Xu, Z. Wang, L. Huang, J. Li, F. Li, J. Wicks, M. Luo, D.-H. Nam, C.-S. Tan, Y. Ding, J. Wu, C.-T. Dinh, D. Sinton, G. Zheng, E. H. Sargent*. Enhanced nitrate-to-ammonia activity on copper-nickel alloys via tuning of intermediate adsorption. J. Am. Chem. Soc.142, 5702-5708 (2020).
7. Y. Wang, Z. Wang, C.-T. Dinh, J. Li, A. Ozden, M. G. Kibria, A. Seifitokaldani, C.-S. Tan, C. M. Gabardo, H. Zhou, F. Li, Y. Lum, C. McCallum, Y. Xu, M. Li, A. Proppe, A. Johnston, P. Todorovic, T.-T. Zhuang, D. Sinton, S. O. Kelly, E. H. Sargent*. Catalyst synthesis under CO2 electroreduction favours faceting and promotes multi-carbon hydrocarbon electrosynthesis. Nat. Catal. 3, 98-106 (2020).
8. Y. Lum, J. E. Huang, Z. Wang, M. Luo, D.-H. Nam, W. R. Leow, B. Chen, J. Wicks, Y. Li, Y. Wang, C.-T. Dinh, J. Li, T.-T. Zhuang, F. Li, T.-K. Sham, D. Sinton, E. H. Sargent*. Tuning hydroxyl binding energy enables selective electrochemical oxidation of ethylene to ethylene glycol. Nat. Catal. 3, 14-22 (2020).
9. F. Li, Y. Li, Z. Wang, J. Li, D.-H. Nam, Y. Lum, M. Luo, X. Wang, A. Ozden, S.-F. Hung, B. Chen, Y. Wang, J. Wicks, Y. Xu, Y. Li, C. M. Gabardo, C.-T. Dinh, Y. Wang, T.-T. Zhuang, D. Sinton, E. H. Sargent*. Cooperative CO2-to-ethanol conversion via enriched intermediates at molecule:metal catalyst interfaces. Nat. Catal. 3, 75-82 (2020).
10. F. Li, A. Thevenon, A. Rosas-Hernandez, Z. Wang, Y. Li, C. M. Cabardo, A. Odzen, C.-T. Dinh, J. Li, Y. Wang, J. Edwards, Y. Xu, C. McCallum, L. Tao, Z.-Q. Liang, M. Luo, X. Wang, H.-H. Li, C. O’Brien, C.-S. Tan, D.-H. Nam, R. Quintero-Bermudez, T.-T. Zhuang, Y. Li, Z. Han, R. David Britt, D. Sinton, T. Agapie*, J. Peters*, E. H. Sargent*. Molecular tuning of CO2-to-ethlyene conversion. Nature 557, 509-513 (2020).
11. J. Li, Z. Wang, C. McCallum, Y. Xu, F. Li, Y. Wang, C. M. Gabredo, C.-T. Dinh, T.-T. Zhuang, L. Wang, J. Howe, Y. Ren, E. H. Sargent*, D. Sinton*. Constraining CO coverage on copper promotes high-efficiency ethylene electroproduction. Nat. Catal. 2, 1124-1131 (2019).
12. Y. Wang, J. Liu, Y. Wang, Y. Wang, G. Zheng*. Efficient solar-driven electrocatalytic CO2 reduction in a redox-medium-assisted system. Nat. Commun. 9, 5003 (2018).
13. Y. Wang,L. Chen, X. Yu, Y. Wang*, G. Zheng*.Superb alkaline hydrogen evolution and simultaneous electricity generation by Pt-decorated Ni3N nanosheets. Adv. Energy Mater. 7, 1601390 (2017).
14. Y. Wang, J. Liu, Y. Wang, A. M. Al-Enizi, G. Zheng*.Tuning of CO2 reduction selectivity on metal electrocatalysts. Small13, 1701809 (2017).
15. Y. Wang, X. Cui, Y. Zhang, L. Zhang, X. Gong*, G. Zheng*. Achieving high aqueous energy storage via hydrogen generation passivation. Adv. Mater. 28, 7626-7632 (2016).

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