Zhang Quan, Yang Chao, Guan Anxiang, Kan Miao, Zheng Gengfeng
Laboratory of Advanced Materials, Department of Chemistry and Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Faculty of Chemistry and Materials Science, Fudan University, Shanghai 200438, China.
Nanoscale. 2022 Jul 28;14(29):10268-10285. doi: 10.1039/d2nr02588d.
Photocatalytic CO conversion into high-value chemicals has been emerging as an attractive research direction in achieving carbon resource sustainability. The chemical products can be categorized into C1 and multi-carbon (C) products. In this review, we describe the recent research progress in photocatalytic CO conversion systems from C1 products to multi-carbon oxygenates, and analyze the reasons related to their catalytic mechanisms, as the production of multi-carbon oxygenates is generally more difficult than that of C1 products. Then we discuss several examples in promoting the photoconversion of CO to value-added multi-carbon products in the aspects of photocatalyst design, mass transfer control, determination of active sites, and intermediate regulation. Finally, we summarize perspectives on the challenges and propose potential directions in this fast-developing field, such as the prospect of CO transformation to long-chain hydrocarbons like salicylic acid or even plastics.
光催化将CO转化为高价值化学品已成为实现碳资源可持续性的一个有吸引力的研究方向。化学产品可分为C1产品和多碳(C)产品。在本综述中,我们描述了光催化CO转化系统从C1产品到多碳含氧化合物的最新研究进展,并分析了与其催化机制相关的原因,因为多碳含氧化合物的生产通常比C1产品更困难。然后,我们讨论了在光催化剂设计、传质控制、活性位点确定和中间体调控等方面促进CO光转化为增值多碳产品的几个例子。最后,我们总结了对挑战的看法,并提出了这个快速发展领域的潜在方向,例如CO转化为水杨酸甚至塑料等长链烃的前景。