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用于电催化甘油氧化制备高附加值化学品的非贵金属催化剂的高效制备策略。

Efficient strategies for the preparation of non-noble metal catalysts for electrocatalytic glycerol oxidation towards high-value-added chemicals.

作者信息

Song Mingyang, Bai Yitong, Li Jiefei, Qi Xingyue

机构信息

School of Petrochemical Engineering, Shenyang University of Technology Liaoyang 111003 China

School of Public Health, Inner Mongolia Medical University Hohhot 010110 China

出版信息

RSC Adv. 2025 Jun 17;15(26):20513-20529. doi: 10.1039/d5ra02222c. eCollection 2025 Jun 16.

Abstract

Glycerol is an important by-product of the biodiesel production process, is cheap and abundant, and can be converted into a variety of high-value-added fine chemicals. The glycerol electrooxidation reaction (GEOR) has significant application potential owing to its lack of oxidant requirements and the generation of clean hydrogen energy at the cathode. Currently, noble metal materials serve as effective catalysts for the GEOR, but their high cost and scarcity limit their commercial applications. Consequently, there is an urgent necessity to develop efficient non-noble metal catalysts for the GEOR to replace noble metal catalysts. This paper briefly introduces the reaction mechanism of the GEOR and reviews recent research progress on the synthesis of transition metal-based GEOR catalysts, focusing on Ni-, Co-, Cu-, and Mn-based catalysts. A particular emphasis is placed on the strategies to improve the GEOR performance of different non-noble metal catalysts, which include alloying, doping engineering, defect engineering, heterostructure construction, crystal phase regulation, morphology control and composite synthesis. Finally, we provide a comprehensive discussion on the challenges and future prospects of non-noble metal catalysts in the GEOR.

摘要

甘油是生物柴油生产过程中的一种重要副产物,价格低廉且产量丰富,能够被转化为多种高附加值的精细化学品。甘油电氧化反应(GEOR)由于无需氧化剂且在阴极产生清洁氢能而具有显著的应用潜力。目前,贵金属材料是GEOR的有效催化剂,但其高成本和稀缺性限制了它们的商业应用。因此,迫切需要开发用于GEOR的高效非贵金属催化剂以替代贵金属催化剂。本文简要介绍了GEOR的反应机理,并综述了过渡金属基GEOR催化剂合成的近期研究进展,重点关注基于镍、钴、铜和锰的催化剂。特别强调了提高不同非贵金属催化剂GEOR性能的策略,包括合金化、掺杂工程、缺陷工程、异质结构构建、晶相调控、形貌控制和复合合成。最后,我们对非贵金属催化剂在GEOR中的挑战和未来前景进行了全面讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15c7/12172160/d82acec7cf9d/d5ra02222c-f1.jpg

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