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Highly Efficient and Reversible Carbon Dioxide Capture by Carbanion‐Functionalized Ionic Liquids

Zhaowei Zhang, Weiqi Mao, Kaili Wang, Lili Jiang, Shenyao Wang, Haoran Li, Congmin Wang

2024ChemSusChem14 citationsDOI

Abstract

Abstract Due to the active unstable nature of carbon anions, it is challenging to develop carbanion‐functionalized ionic liquids (ILs) for efficient and reversible carbon dioxide (CO 2 ) capture. Here, a series of carbanion‐based ILs with large conjugated structures were designed and a promising system was achieved through tuning the nucleophilicity of carbanions and screening the cation. The ideal carbanion‐functionalized IL trihexyl(tetradecyl)phosphonium N,N‐diethycyanoacetoamide ([P 66614 ][DECA]) showed equimolar chemisorption of CO 2 ( up to 0.98 mol CO 2 /mol IL) under ambient pressure and excellent absorption rate. What′s more, the combined CO 2 can be released easily, leading to excellent reversibility due to high stability of anion conjugated structures. More importantly, the presence of water had negligible effect on the absorption capacity, which makes it potential to be applied to the CO 2 capture in industrial flue gas. The chemisorption mechanism of the carbanion and CO 2 was confirmed by spectroscopic investigations and DFT calculations, where carboxylic acid product was formed through proton transfer after the carbanions reacted with CO 2 . Considering that high capacity, quick rate as well as excellent reversibility, these carbanion‐functionalized ILs should certainly represent competitive candidates for further scale up and practical application in CO 2 capture.

Topics & Concepts

CarbanionChemistryPhosphoniumChemisorptionIonic liquidAbsorption (acoustics)Inorganic chemistryOrganic chemistryAdsorptionMaterials scienceCatalysisComposite materialIonic liquids properties and applicationsCarbon Dioxide Capture TechnologiesCarbon dioxide utilization in catalysis
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