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October 26, 2022Angewandte Chemie International Edition46 citations

Electrocatalytic CO2 Upgrading to Triethanolamine by Bromine‐Assisted C2H4 Oxidation

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QWQihao WangCYChao YangYYYaqin Yan

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Abstract

Abstract The electrocatalytic carbon dioxide (CO 2 ) reduction is a promising approach for converting this greenhouse gas into value‐added chemicals, while the capability of producing products with longer carbon chains (C n >3) is limited. Herein, we demonstrate the Br‐assisted electrocatalytic oxidation of ethylene (C 2 H 4 ), a major CO 2 electroreduction product, into 2‐bromoethanol by electro‐generated bromine on metal phthalocyanine catalysts. Due to the preferential formation of Br 2 over *O or Cl 2 to activate the C=C bond, a high partial current density of producing 2‐bromoethanol (46.6 mA⋅cm −2 ) was obtained with 87.2 % Faradaic efficiency. Further coupling with the electrocatalytic nitrite reduction to ammonia at the cathode allowed the production of triethanolamine with six carbon atoms. Moreover, by coupling a CO 2 electrolysis cell for in situ C 2 H 4 generation and a C 2 H 4 oxidation/nitrite reduction cell, the capability of upgrading of CO 2 and nitrite into triethanolamine was demonstrated.

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Cite This Study

Wang et al. (2022) studied this question.

synapsesocial.com/papers/6a086c35ae7f011b61ddef02https://doi.org/10.1002/anie.202212733
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