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基于咪唑鎓的离子液体光催化还原二氧化碳

Photocatalytic Carbon Dioxide Reduction with Imidazolium-Based Ionic Liquids.

作者信息

Eisele Lisa, Bica-Schröder Katharina

机构信息

Institute of Applied Synthetic Chemistry, TU Wien, Getreidemarkt 9/163, 1060, Wien, Austria.

出版信息

ChemSusChem. 2025 Jun 2;18(11):e202402626. doi: 10.1002/cssc.202402626. Epub 2025 Mar 19.

Abstract

The growing urgency of addressing climate change caused by greenhouse gas emissions and dwindling fossil fuel supplies has heightened the need for effective strategies to capture and utilize carbon dioxide. Photocatalytic CO conversion, inspired by natural photosynthesis, presents a viable approach for transforming CO into useful C-C chemical intermediates for industrial purposes. However, the inherent stability of CO and the competing hydrogen evolution reaction (HER) introduce significant obstacles. Imidazolium-based ionic liquids can pre-activate CO, accelerate reaction kinetics, and act as eco-friendly solvents or additives. Systems employing ionic liquids with catalysts, such as homogeneous organocatalysts and heterogeneous materials like Metal-Organic Frameworks (MOFs) and quantum dots, offer potential solutions to these challenges. This review focuses on the role of ionic liquids in both homogeneous and heterogeneous photocatalytic processes, emphasizing their use in CO reduction and highlighting recent mechanistic insights for imidazolium-based species.

摘要

温室气体排放导致气候变化的紧迫性日益增加,同时化石燃料供应日益减少,这使得人们对捕获和利用二氧化碳的有效策略的需求更加迫切。受自然光合作用启发的光催化CO转化为将CO转化为用于工业目的的有用C-C化学中间体提供了一种可行的方法。然而,CO的固有稳定性和竞争性析氢反应(HER)带来了重大障碍。基于咪唑鎓的离子液体可以预活化CO,加速反应动力学,并作为环保型溶剂或添加剂。使用离子液体与催化剂的体系,如均相有机催化剂以及金属有机框架(MOF)和量子点等非均相材料,为这些挑战提供了潜在的解决方案。本综述重点关注离子液体在均相和非均相光催化过程中的作用,强调其在CO还原中的应用,并突出基于咪唑鎓物种的最新机理见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/277c/12131671/19004018d4ab/CSSC-18-e202402626-g011.jpg

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