Gong Wanbing, Ma Jun, Chen Guangyu, Dai Yitao, Long Ran, Zhao Huijun, Xiong Yujie
Key Laboratory of Precision and Intelligent Chemistry, Hefei National Research Center for Physical Sciences at the Microscale, School of Chemistry and Materials Science, School of Nuclear Science and Technology, National Synchrotron Radiation Laboratory, University of Science and Technology of China, Hefei, Anhui 230026, P. R. China.
Suzhou Institute for Advanced Research, University of Science and Technology of China, Suzhou, Jiangsu 215123, P. R. China.
Chem Soc Rev. 2025 Jan 20;54(2):960-982. doi: 10.1039/d4cs01005a.
Selective hydrogenation has been employed extensively to produce value-added chemicals and fuels, greatly alleviating the problems of fossil resources and green synthesis. However, the design and synthesis of highly efficient catalysts, especially those that are inexpensive and abundant in the earth's crust, is still required for basic research and subsequent industrial applications. In recent years, many studies have revealed that the rational design and synthesis of heterogeneous catalysts can efficaciously improve the catalytic performance of hydrogenation reactions. However, the relationship between nonprecious metal catalysts and hydrogenation performance from the perspective of different catalytic systems still remains to be understood. In this review, we provide a comprehensive and systematic overview of the recent advances in the synthesis of nonprecious metal catalysts for heterogeneous selective hydrogenation reactions including thermocatalytic hydrogenation/transfer hydrogenation, photocatalytic hydrogenation and electrocatalytic reduction. In addition, we also aim to provide a clear picture of the recent design strategies and proposals for the nonprecious metal catalysed hydrogenation reactions. Finally, we discuss the current challenges and future research opportunities for the precise design and synthesis of nonprecious metal catalysts for selective hydrogenation reactions.
选择性氢化已被广泛用于生产高附加值化学品和燃料,极大地缓解了化石资源问题并促进了绿色合成。然而,对于基础研究和后续工业应用而言,仍需要设计和合成高效催化剂,尤其是在地壳中储量丰富且价格低廉的催化剂。近年来,许多研究表明,合理设计和合成多相催化剂可以有效提高氢化反应的催化性能。然而,从不同催化体系的角度来看,非贵金属催化剂与氢化性能之间的关系仍有待深入理解。在这篇综述中,我们全面系统地概述了非贵金属催化剂用于多相选择性氢化反应合成方面的最新进展,包括热催化氢化/转移氢化、光催化氢化和电催化还原。此外,我们还旨在清晰呈现非贵金属催化氢化反应的近期设计策略和建议。最后,我们讨论了非贵金属催化剂用于选择性氢化反应的精确设计和合成目前面临的挑战以及未来的研究机遇。