Development of Efficient Ru/Deep Eutectic Solvent Catalytic System for Alkoxycarbonylation of Alkene without Acid Additives

Author:

Liu Yumei12,Yang Deshuai3,Zeng Guixiang3,Li Kexin2,Wei Shuang2,Li Hao2,Ji Min1,Liu Ruixia24ORCID

Affiliation:

1. School of Chemistry Dalian University of Technology 116023 Dalian P. R. China

2. Beijing Key Laboratory of Ionic Liquids Clean Process CAS Key Laboratory of Green Process and Engineering State Key Laboratory of Multiphase Complex Systems Institute of Process Engineering Innovation Academy for Green Manufacture CAS 100190 Beijing P. R. China

3. Kuang Yaming Honors School and Institute for Brain Sciences Nanjing University 210023 Nanjing People's Republic of China

4. School of Chemical Engineering University of Chinese Academy of Sciences 100049 Beijing P. R. China

Abstract

AbstractThe catalytic alkoxycarbonylation of alkenes is an attractive, atom‐efficient method for producing value‐added carboxylic esters. However, the conventional catalyst system for this reaction needs coordination with a noble metal, sensitive ligands and proton acid additives. Therefore, the design of a simple and efficient catalyst system without any acid additives under mild conditions is still a major challenge. In this work, a simple ruthenium/deep eutectic solvent catalytic system was developed to effectively catalyse the alkoxycarbonylation reaction without any sensitive ligands or acid additives under mild conditions. The conversion of 1‐hexene reached 99.0 %, and the ester selectivity was 99.1 %, much higher than that of Ruthenium carbonyl without deep eutectic solvent. The excellent performance of the catalytic system could be ascribed to the form of the ruthenium active species [Ru(CO)2Br3] in the deep eutectic solvent. This innovative catalyst system presents a significant advancement in the alkoxycarbonylation reaction, eliminating the use of acid additives and delicate ligands.

Funder

National Outstanding Youth Science Fund Project of National Natural Science Foundation of China

Dalian National Laboratory for Clean Energy

Publisher

Wiley

Subject

General Chemistry

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