Electrochemically Driven Selective Olefin Epoxidation by Cobalt-TAML Catalyst

  • Kim, Suyeon S.; 
  • Hong, Sugyeong; 
  • Surendran, Adarsh Koovakattil; 
  • Roy, Avishek; 
  • Malik, Deesha D.; 
  • ... Jin, Kyoungsuk; 
  • 외 9명
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초록

Epoxides are versatile chemical intermediates that are used in the manufacture of diversified industrial products. For decades, thermochemical conversion has long been employed as the primary synthetic route. However, it has several drawbacks, such as harsh and explosive operating conditions, as well as a significant greenhouse gas emissions problem. In this study, we propose an alternative electrocatalytic epoxidation reaction, using [Co-III(TAML)](-) (TAML = tetraamido macrocyclic ligand) as a molecular catalyst. Under ambient conditions, the catalyst selectively epoxidized olefin substrates using water as the oxygen atom source, affording an efficient catalytic epoxidation of olefins with a broad substrate scope. Notably, [Co-III(TAML)](-) achieved >60% Faradaic efficiency (FE) with >90% selectivity for cyclohexene epoxidation, which other heterogeneous electrocatalysts have never attained. Electrokinetic studies shed further light on the detailed mechanism of olefin epoxidation, which involved a rate-limiting proton-coupled electron transfer process, forming reactive cobalt oxygen active species embedded in 2e(-)oxidized TAML. Operando voltammetry-electrospray ionization mass spectrometry (VESI-MS) and electron paramagnetic resonance (EPR) analyses were utilized to identify a cobalt oxygen active intermediate during an electrocatalytic epoxidation by [Co-III(TAML)](-). Our findings offer a new possibility for sustainable chemical feedstock production using electrochemical methods.

키워드

Cobalt; Iron; Oxygen; Phosphate; Proton; Bioremediation; Electrolytic Analysis; Electron Spin Resonance Spectroscopy; Epoxidation; Ionization Of Gases; Paramagnetic Resonance; Reaction Intermediates; Chemical Intermediates; Electrocatalytic; Epoxidation Reactions; Greenhouse Gas Emissions; Industrial Product; Olefin Epoxidation; Operating Condition; Synthetic Routes; Thermochemical Conversion; ]+ Catalyst; Electrospray Ionization; Alkene; Cobalt; Cyclohexene Derivative; Electrolyte; Epoxide; Iron; Oxygen; Phosphate; Proton; Tetraamido Macrocyclic Ligand; Unclassified Drug; Article; Catalysis; Catalyst; Chemical Reaction; Electrochemical Analysis; Electron Spin Resonance; Electron Transport; Electronic Patient Record; Electrospray Mass Spectrometry; Epoxidation; Faradaic Efficiency; Greenhouse Gas Emission; Kinetics; Oxidation Reduction Reaction; Spectroscopy; Voltammetry; Article; Water; OXYGEN EVOLUTION REACTION; ACID-BASE CATALYSIS; WATER OXIDATION; ELECTROCATALYTIC EPOXIDATION; C-H; COMPLEX; ELECTROSYNTHESIS; PHOSPHATE
제목
Electrochemically Driven Selective Olefin Epoxidation by Cobalt-TAML Catalyst
저자
Kim, Suyeon S.; Hong, Sugyeong; Surendran, Adarsh Koovakattil; Roy, Avishek; Malik, Deesha D.; Chun, Dohyun; Kim, Sojin; Kim, Yumin; Lee, Yong-Min; Lee, Yong Ho; Lu, Xiaoyan; Roithova, Jana; Kim, Sun Hee; Nam, Wonwoo; Jin, Kyoungsuk
DOI
10.1021/jacs.4c16243
발행일
2025-01-29
유형
Article
저널명
Journal of the American Chemical Society
권
147
호
6
페이지
5269 ~ 5278