Spontaneous α‐C−H Carboxylation of Ketones by Gaseous CO2 at the Air‐water Interface of Aqueous Microdroplets

Author:

Basuri Pallab1,Mukhopadhyay Sinchan1,Reddy K. S. S. V. Prasad2,Unni Keerthana1,Spoorthi B. K.1,Shantha Kumar Jenifer1,Yamijala Sharma S. R. K. C.3,Pradeep Thalappil1ORCID

Affiliation:

1. DST Unit of Nanoscience and Thematic Unit of Excellence Department of Chemistry Indian Institute of Technology Madras 600036 Chennai Tamil Nadu India

2. Department of Chemistry Indian Institute of Technology Madras 600036 Chennai Tamil Nadu India

3. Centre for Atomistic Modelling and Materials Design Centre for Molecular Materials and Functions Centre for Quantum Information, Communication, and Computing Department of Chemistry Indian Institute of Technology Madras 600036 Chennai Tamil Nadu India

Abstract

AbstractWe present a catalyst‐free route for the reduction of carbon dioxide integrated with the formation of a carbon‐carbon bond at the air/water interface of negatively charged aqueous microdroplets, at ambient temperature. The reactions proceed through carbanion generation at the α‐carbon of a ketone followed by nucleophilic addition to CO2. Online mass spectrometry reveals that the product is an β‐ketoacid. Several factors, such as the concentration of the reagents, pressure of CO2 gas, and distance traveled by the droplets, control the kinetics of the reaction. Theoretical calculations suggest that water in the microdroplets facilitates this unusual chemistry. Furthermore, such a microdroplet strategy has been extended to seven different ketones. This work demonstrates a green pathway for the reduction of CO2 to useful carboxylated organic products.

Funder

Indian Institute of Technology Madras

Department of Science and Technology, Ministry of Science and Technology, India

Publisher

Wiley

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