P Sreejyothi, Mandal Swadhin K
Department of Chemical Sciences, Indian Institute of Science Education and Research-Kolkata Mohanpur-741246 India
Chem Sci. 2020 Aug 20;11(39):10571-10593. doi: 10.1039/d0sc03528a.
Over exploitation of natural resources and human activities are relentlessly fueling the emission of CO in the atmosphere. Accordingly, continuous efforts are required to find solutions to address the issue of excessive CO emission and its potential effects on climate change. It is imperative that the world looks towards a portfolio of carbon mitigation solutions, rather than a single strategy. In this regard, the use of CO as a C1 source is an attractive strategy as CO has the potential to be a great asset for the industrial sector and consumers across the globe. In particular, the reduction of CO offers an alternative to fossil fuels for various organic industrial feedstocks and fuels. Consequently, efficient and scalable approaches for the reduction of CO to products such as methane and methanol can generate value from its emissions. Accordingly, in recent years, metal-free catalysis has emerged as a sustainable approach because of the mild reaction conditions by which CO can be reduced to various value-added products. The metal-free catalytic reduction of CO offers the development of chemical processes with low cost, earth-abundant, non-toxic reagents, and low carbon-footprint. Thus, this perspective aims to present the developments in both the reduction and reductive functionalization chemistry of CO during the last decade using various metal-free catalysts.
自然资源的过度开发和人类活动正在无情地加剧大气中一氧化碳的排放。因此,需要持续努力寻找解决方案,以应对一氧化碳过量排放问题及其对气候变化的潜在影响。世界必须着眼于一系列碳减排解决方案,而不是单一战略。在这方面,将一氧化碳用作碳一源是一种有吸引力的战略,因为一氧化碳有可能成为全球工业部门和消费者的宝贵资产。特别是,一氧化碳的减排为各种有机工业原料和燃料提供了替代化石燃料的选择。因此,将一氧化碳高效且可扩展地还原为甲烷和甲醇等产品的方法可以从其排放中创造价值。相应地,近年来,无金属催化作为一种可持续方法出现了,因为在温和的反应条件下,一氧化碳可以被还原为各种增值产品。无金属催化还原一氧化碳为开发低成本、储量丰富、无毒试剂且碳足迹低的化学工艺提供了可能。因此,本综述旨在介绍过去十年中使用各种无金属催化剂在一氧化碳还原和还原官能团化化学方面的进展。