冯凯 副教授

发布时间:2023-05-22访问量:6030设置



教育经历:

2017/09 – 2020/06  苏州大学 功能纳米与软物质研究院 工学博士

2014/09 – 2017/06 济南大学 材料科学与工程学院 工学硕士

2010/09 – 2014/06  济南大学 材料科学与工程学院 工学学士



工作经历:

2023/05至今 苏州大学功能纳米与软物质研究院 副教授

2020/08 – 2023/02 清华大学 化学工程系 博士后

2018/07 – 2020/06 清华大学 化学工程系 联培博士生



所在课题组:

张晓宏教授、何乐教授课题组



联系方式:

江苏省苏州市工业园区仁爱路199号,910-301

邮箱:fengkai@suda.edu.cn


研究领域:

工业催化、环境催化与催化反应工程

多相催化过程中的构效关系

原位表征


代表性研究成果:

近年来主要从事热/光热小分子催化转化领域的研究工作,研究内容包括催化反应机理及催化构效关系的原位探究,高效催化剂及催化工艺的设计,原位表征平台的开发等;目前已在J. Am. Chem. Soc.,Nat. Commun.,Adv. Mater.,ACS Nano,ACS Catal.,Appl. Catal. B等化学、材料、催化领域高水平期刊上发表论文60余篇;获授权专利5项;主持国家自然科学基金青年科学基金项目(C类),江苏省基础研究计划自然科学基金青年基金项目,中国博士后科学基金第15批特别资助(站中),中国博士后科学基金第69批面上资助等。


近年代表性论文:

  1. Feng, K.#; Qian, S.#; Liu, X.#; Shen, Y.; Li, Z.; Chen, Y.; Tian, J.; He, L.; Zhang, X.; Cheng, Y.*; Su, D.*; Yan, B.* Atmospheric Pressure Ammonia Synthesis via CO2-Coupled Hydrogenation. J. Am. Chem. Soc. 2026, DOI: 10.1021/jacs.6c11181.

  2. Ma, Y.#; Genest, A.#; Liu, S.#; Shen, J.; Chen, S.; Hu, X.; Kang, S.; Dong, X.; Xi, Y.; Wang, Z.; Zhou, Y.; Wu, Z.; Zhu, Z.; Li, C.; Fang, Y.; Zhang, X.; Feng, K.*; Rupprechter, G.*; An, X.*; He, L.*,Thermoelectrics‐Mediated Photon‐Phonon‐Electron Coupling Enables Unconventional Thermal Contributions in Plasmonic Catalysis. Adv. Funct. Mater. 2026, DOI: 10.1002/adfm.77363.

  3. Ji, Y.#; An, X.#; Liu, S.; Nie, K.; Cao, L.; Xu, Y.; Shen, J.; Zhou, Y.; Wu, C.; Dong, X.; Li, Z.; Feng, Q.; Xiao, M.; Chen, Z.; Li, C.; Yan, B.; Cheng, Y.; Qian, S.*; Feng, K.*; He, L.* Spatially Separated Activation-Conversion Nitride Catalysts for Accelerated Ammonia Synthesis. ACS Appl. Mater. Interfaces 2026, 18 (26), 36866-36879.

  4. Xu, Y.#; Xue, Y.#; Li, C.; Ji, Y.; Zhou, Y.; Feng, Q.; Shen, J.; An, X.*; Feng, K.*; He, L.* Light-Driven Ammonia Synthesis from Nitrogen and Hydrogen. J. Mater. Chem. A 2026, 14 (4), 2071-2083.

  5. Zhu, Z.#; Qian, S.#; Dong, X.#; Liu, S.; Zhou, Y.; Nie, K.; An, X.; Li, C.; Cheng, Y.; Yan, B.*; Feng, K.*; Zhang, X.; He, L.* Light-Induced Pressurization Effect in Au-Ni Heterostructures for Plasmonic Photocatalysis. Nat. Commun. 2025, 16 (1), 9560.

  6. Dong, X.#; Zhu, Z.#; Chen, Z.#; Sun, Z.; Qian, S.; Wang, Z.; Zhou, Y.; Nie, K.; Liu, S.; Li, Z.; Xiao, M.; Zhang, J.; Yan, B.; Cheng, Y.; Li, C.; Zhang, X.; An, X.*; Feng, K.*; Hu, Z.*; He, L.* Boosting Solar Methanol Production over Hierarchical Carbon Nanocage-Supported In2O3–x via Photoenhanced Electron Buffering Effect. ACS Nano 2025, 19 (27), 25403–25412.

  7. Wang, Z.#; Dong, X.#; Sun, Z.#; Zhou, Y.; Liu, S.; Qian, S.; Chen, Z.; An, X.; Nie, K.; Yan, B.; Zhu, Z.; Zhang, X.; Li, C.*; Feng, K.*; Hu, Z.*; He, L.* Hierarchical Carbon Nanocage-Enabled Electron Buffering to Indium Oxide for Efficient CO2 Hydrogenation to Methanol. ACS Appl Mater Interfaces 2025, 17 (22), 32413–32422.

  8. Li, Z.#; Xiao, M.#; Liu, X.; Zhang, J.; Shen, J.; An, X.; Li, C.; Li, Z.; Chen, Y.; Zhang, J.; Su, D.; Feng, K.*; Yan, B.*; Zhang, X.; He, L.* Supra‐Strong Metal‐Support Interaction in Oxide‐Solid‐Solution‐Derived Transition Metal Catalysts. Small 2025, 21 (20), 2411636.

  9. Qian, S.#; Feng, K.#; Chen, X.*; Li, Z.; Tian, G.; Huang, H.; Wang, Y.; Sun, M.; Sun, X.; Nie, K.; Chen, Y.; Dai, T.; Su, D.; Niu, Z.; Yan, B.*; Cheng, Y.* Alkali Metal Template Effect Manipulates Dual-Site Cobalt-Molybdenum Catalyst Construction for Efficient Ammonia Synthesis. ACS Catal. 2025, 15 (23), 20320–20331.

  10. Yu, K.#; Feng, K.#; Cai, M.; Li, H.; Zhou, Y.; Shen, J.; Liu, S.; Zhu, Z.; Sohail, M.; Tolstoy, V.; An, X.*; Li, C.*; He, L.* Nature-Inspired Nanoarray Catalyst toward Balanced Heat and Mass Transport in Photothermal Catalysis. ACS Nano 2025, 19 (19), 18674–18685.

  11. Wu, C.#; Shen, J.#; An, X.#; Wu, Z.; Qian, S.; Zhang, S.; Wang, Z.; Song, B.; Cheng, Y.; Yan, B.; Sham, T.-K.; Zhang, X.; Li, C.*; Feng, K.*; He, L.* Phosphorization-Induced “Fence Effect” on the Active Hydrogen Species Migration Enables Tunable CO2 Hydrogenation Selectivity. ACS Catal. 2024, 8592–8601.

  12. Chen, Z.; Dong, X.; Sun, Z.; An, X.; Li, C.; Liu, S.; Shen, J.; Wu, C.; Wang, J.; Wang, Z.; Zhu, Z.; Zhou, Y.; Yu, K.; Ma, Y.; He, J.; Feng, K.*; He, L.*; Hu, Z.* Hierarchical Carbon Nanocages as Superior Supports for Photothermal CO2 Catalysis. ACS Nano 2024, 18 (30), 19672–19681.

  13. Feng, K.#; Zhang, J.#; Li, Z.; Liu, X.; Pan, Y.; Wu, Z.; Tian, J.; Chen, Y.; Zhang, C.; Xue, Q.; He, L.; Zhang, X.; Wang, Y.; Yang, B.; Su, D.; Luo, K. H.; Yan, B. Spontaneous Regeneration of Active Sites against Catalyst Deactivation. Appl. Catal., B 2024, 344, 123647.

  14. Feng, K.; Qian, S.; Zhang, Z.; Li, Z.; Sun, X.; Cheng, Y.; Yan, B. Functionalization of Inert Silica to Construct Si-O-Ni Interfacial Sites for Stable Dry Reforming of Methane. Chem. Eng. J. 2023, 465, 142808.

  15. Zhu, Z.#; Feng, K.#; Li, C.*; Tang, R.; Xiao, M.; Song, R.; Yang, D.; Yan, B.*; He, L.* Stabilization of Exposed Metal Nanocrystals in High-Temperature Heterogeneous Catalysis. Adv. Mater. 2022, 34 (6), e2108727.

  16. Zhang, Z.; Yu, Z.; Feng, K.*; Yan, B*. Eu3+ Doping-Promoted Ni-CeO2 Interaction for Efficient Low-Temperature CO2 Methanation. Appl. Catal., B 2022, 317, 121800.

  17. Feng, K.; Tian, J.; Zhang, J.; Li, Z.; Chen, Y.; Luo, K. H.; Yang, B.; Yan, B.* Dual Functionalized Interstitial N Atoms in Co3Mo3N Enabling CO2 Activation. ACS Catal. 2022, 12 (8), 4696–4706.

  18. Wang, S.#; Feng, K.#; Zhang, D.; Yang, D.; Xiao, M.; Zhang, C.; He, L.; Yan, B.*; Ozin, G. A.; Sun, W.* Stable Cu Catalysts Supported by Two-Dimensional SiO2 with Strong Metal-Support Interaction. Adv. Sci. 2022, 9 (9), e2104972.

  19. Wang, Y.#; Feng, K.#; Tian, J.; Zhang, J.; Zhao, B.; Luo, K. H.; Yan, B.* Atomically Dispersed Zn-Stabilized Niδ+ Enabling Tunable Selectivity for CO2 Hydrogenation. ChemSusChem 2022, 15 (7), e202102439.

  20. Feng, K.; Wang, Y.; Guo, M.; Zhang, J.; Li, Z.; Deng, T.; Zhang, Z.; Yan, B.* In-Situ/Operando Techniques to Identify Active Sites for Thermochemical Conversion of CO2 over Heterogeneous Catalysts. J. Energ. Chem. 2021, 62, 153–171.

  21. Feng, K.; Tian, J.; Guo, M.; Wang, Y.; Wang, S.; Wu, Z.; Zhang, J.; He, L.; Yan, B. Experimentally Unveiling the Origin of Tunable Selectivity for CO2 Hydrogenation over Ni-Based Catalysts. Appl. Catal., B 2021, 292, 120191.

  22. Feng, K.#; Wang, S.#; Zhang, D.#; Wang, L.; Yu, Y.; Feng, K.; Li, Z.; Zhu, Z.; Li, C.; Cai, M.; Wu, Z.; Kong, N.; Yan, B.; Zhong, J.*; Zhang, X.*; Ozin, G. A.*; He, L.* Cobalt Plasmonic Superstructures Enable Almost 100% Broadband Photon Efficient CO2 Photocatalysis. Adv. Mater. 2020, 32 (24), e2000014.



责任编辑:杨娟

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