Hu Qinyuan, Zhang Zhixing, He Dongpo, Wu Jiacong, Ding Jinyu, Chen Qingxia, Jiao Xingchen, Xie Yi
Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, School of Chemical and Material Engineering, Jiangnan University, Wuxi 214122, China.
Key Laboratory of Precision and Intelligent Chemistry, University of Science and Technology of China, Hefei, Anhui 230026, China.
J Am Chem Soc. 2024 Jun 26;146(25):16950-16962. doi: 10.1021/jacs.4c04848. Epub 2024 Jun 4.
Nowadays, plastic waste threatens public health and the natural ecosystems of our lives. It is highly beneficial to recycle plastic waste in order to maximize the reuse of its contained carbon sources for the development of other valuable products. Unfortunately, traditional techniques usually require significant energy consumption and result in the generation of hazardous waste. Herein, the up-to-date developments on the "green" strategies under mild conditions including electrocatalysis, photocatalysis, and photoelectrocatalysis of plastic wastes are presented. During the oxidation of plastics in these "green" strategies, corresponding reduction reactions usually exist, which affect the property of catalytic plastics conversion. Particularly, we mainly focus on how to design the corresponding half reactions, such as the water reduction, carbon dioxide reduction, and nitrate reduction. Finally, we provide forward-looking insight into the enhancement of these "green" strategies, the extension of more half reactions into other organic catalysis, a comprehensive exploration of the underlying mechanisms through studies and theoretical analysis and the problems for practical applications that needs to be solved.
如今,塑料垃圾威胁着公众健康和我们生活的自然生态系统。为了最大限度地将塑料垃圾所含碳源再利用以开发其他有价值的产品,对塑料垃圾进行回收利用非常有益。不幸的是,传统技术通常需要大量能源消耗,并会产生有害废物。在此,介绍了在温和条件下塑料垃圾的“绿色”策略的最新进展,包括电催化、光催化和光电催化。在这些“绿色”策略中塑料氧化过程中,通常存在相应的还原反应,这会影响催化塑料转化的性能。特别是,我们主要关注如何设计相应的半反应,如水还原、二氧化碳还原和硝酸盐还原。最后,我们对这些“绿色”策略的改进、将更多半反应扩展到其他有机催化、通过研究和理论分析对潜在机制进行全面探索以及实际应用中需要解决的问题提供了前瞻性见解。