成康

发布日期:2020-07-23     浏览次数:次   

教授,博士生导师
实验室电话:0592-2187470
办公室:化学楼324室
E-mail:
kangcheng@xmu.edu.cn
课题组网页:https://wangye.xmu.edu.cn/

个人简历:

教授(bat365正版唯一官网,2023-)
副教授(bat365正版唯一官网,2020-2022)
博士后(荷兰乌特勒支大学,徳拜纳米科学研究所,2017-2020)
iChEM研究员(能源材料化学协同创新中心,2014-2017)
博士(法国里尔大学分子与凝聚态材料专业,2012-2015)
博士(bat365正版唯一官网化学系物理化学专业,2009-2014)
学士(四川大学轻化工程专业,2005-2009)


研究兴趣:

与工业催化相关的合成气转化,二氧化碳和甲烷的催化转化,烷烃异构、裂解和芳构化反应。


近期主要代表论著:

  1. 1. K. Cheng, K. P. de Jong,* et al., Maximizing noble metal utilization in solid catalysts by control of nanoparticle location. Science, 377 (2022) 204–208.

  2. 2. L. Zeng,# K. Cheng,# Z. Jiang,* G. Fu,* Y. Wang,* et al., Stable anchoring of single rhodium atoms by indium in zeolite alkane dehydrogenation catalysts. Science, 383 (2024) 998–1004.

  3. 3. Y. Li, S. Liu, K. Cheng,* Y. Wang.* et al., Relay Catalysis in Selective Transformations of C1 into C2+ Molecules. Chem Rev, (2026) doi: 10.1021/acs.chemrev.6c00026.

  4. 4. K. Cheng, Y. Li, J. Kang, Q. Zhang, Y. Wang.* Selectivity Control by Relay Catalysis in CO and CO2 Hydrogenation to Multicarbon Compounds. Acc Chem Res, 57 (2024) 714–725.

  5. 5. C. Wang, B. Wang, K. Cheng,* H. Wang,* K. Li,* et al., Hydrogen Aggregation Enhances CO2 Hydrogenation to Methanol Over In2O3-Based Catalysts, Angew Chem Int Ed, 65, (2026) e6478038.

  6. 6. Y. Han, F. Wu, K. Zhao, K. Cheng,* X. Wang,* Y. Wang,* et al., Atomically dispersed Pd-Mn dual-metal doped CeO2 nanorods for efficient methane oxychlorination, Nat Commun, 17 (2026) 1339.

  7. 7. Y. Xie, J. Cheng, K. Cheng,* Y. Wang,* et al., Separation of MnWOx and NaWSiOx Phases Boosts Oxidative Coupling of Methane, Angew Chem Int Ed, 64 (2025) e202503767.

  8. 8. S. Liu, G. Wu, K. P. de Jong, K. Cheng,* et al., Direct conversion of syngas into methyl acetate by relay catalysis: From fabrication of active sites to process control, AIChE J, 71 (2025) e18664.

  9. 9. M. Wang,# L. Zheng,# G Wang,# J.F. Wu,* K. Cheng,* Y. Wang,* et al., Spinel Nanostructures for the Hydrogenation of CO2 to Methanol and Hydrocarbon Chemicals. J Am Chem Soc, 147, (2024), 14528–14538.

  10. 10. X. Wei,# J. Cheng,# Y. Li, K. Cheng,* F. Sun,* Q. Zhang,* Y. Wang. Bimetallic clusters confined inside silicalite-1 for stable propane dehydrogenation. Nano Res, 16 (2023) 10881–10889.

  11. 11. J. Xiao,# K. Cheng,# X. Xie, Y. Wang,* B.M. Weckhuysen,* et al., Tandem catalysis with double-shelled hollow spheres, Nat Mater, 21 (2022) 572–579.

  12. 12. Y. Li, M. Wang, S. Liu, K. Cheng*, et al., Distance for Communication between Metal and Acid Sites for Syngas Conversion. ACS Catal, 12 (2022) 8793–8801.

  13. 13. Y. Wang,# G. Wang,# K. Cheng,* K.P. de Jong,* Y. Wang,* et al., Visualizing Element Migration over Bifunctional Metal-Zeolite Catalysts and its Impact on Catalysis, Angew Chem Int Ed, 60 (2021) 17735–17743.

  14. 14. K. Cheng, K.P. de Jong,* et al., Impact of the Spatial Organization of Bifunctional Metal-Zeolite Catalysts for Hydroisomerization of Light Alkanes, Angew Chem Int Ed, 59 (2020) 3592–3600.

  15. 15. K. Chen, Y. Li, K. Cheng,* Q. Zhang,* et al., Functionalized Carbon Materials in Syngas Conversion, Small, 17 (2021) 2007527.

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