Heterogeneous Electrochemical Carbon Dioxide Reduction in Aqueous Medium Using a Novel N4-Macrocyclic Cobalt Complex

Libo Sun, Tan Su, Adrian C. Fisher, Xin Wang*

*Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

1 Citation (Scopus)
10 Downloads (CityUHK Scholars)

Abstract

Molecular catalysts represent an exceptional class of materials in the realm of electrochemical carbon dioxide reduction (CO2RR), offering distinct advantages owing to their adaptable structure, which enables precise control of electronic configurations and outstanding performance in CO2RR. This study introduces an innovative approach to heterogeneous electrochemical CO2RR in an aqueous environment, utilizing a newly synthesized N4-macrocyclic cobalt complex generated through a dimerization coupling reaction. By incorporating the quaterpyridine moiety, this cobalt complex exhibits the capability to catalyze CO2RR at low overpotentials and reaches near-unity CO production across a wide potential range, as verified by the online mass spectrometry and in situ attenuated total reflectance-Fourier transform infrared spectroscopy. Comprehensive computational models demonstrate the superiority of utilizing quarterpyridine moiety in mediating CO2 conversion compared to the counterpart. This work not only propels the field of electrochemical CO2RR but also underscores the promising potential of cobalt complexes featuring quaterpyridine moieties in advancing sustainable CO2 conversion technologies within aqueous environments. © 2024 The Author(s). Small Methods published by Wiley-VCH GmbH.
Original languageEnglish
Article number2400627
JournalSmall Methods
Volume8
Issue number11
Online published11 Aug 2024
DOIs
Publication statusPublished - 20 Nov 2024

Funding

This project was supported by the National Research Foundation (NRF), Prime Minister's Office, Singapore, under its Campus for Research Excellence and Technological Enterprise (CREATE) program. X.W. also acknowledges the start-up grant by the City University of Hong Kong (Grant No. 9020005, 9610663, 7020103), ITF-RTH – Global STEM Professorship (9446008) and the Hong Kong Branch of National Precious Metals Material Engineering Research Center – ITC Fund (9448003).

Research Keywords

  • carbon dioxide reduction
  • electrocatalysis
  • heterogeneous catalysis
  • molecular catalysts

Publisher's Copyright Statement

  • This full text is made available under CC-BY-NC 4.0. https://creativecommons.org/licenses/by-nc/4.0/

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