Promoting Co2 Electroreduction Activity of Porphyrinic Conjugated Microporous Polyanilines Via Accelerating Proton Transfer Dynamics

34 Pages Posted: 17 Jun 2024

See all articles by Feng Qiu

Feng Qiu

Shanghai Institute of Technology

Chunyan Li

Shanghai Institute of Technology

Xiaodong Xuan

Shanghai Institute of Technology

Senhe Huang

affiliation not provided to SSRN

Chenbao Lu

affiliation not provided to SSRN

Hualin Lin

Shanghai Institute of Technology

Sheng Han

Shanghai Institute of Technology - School of Chemical and Environmental Engineering

Xiaodong Zhuang

affiliation not provided to SSRN

Wai-Yeung Wong

Hong Kong Polytechnic University

Abstract

Conjugated microporous polymers (CMPs) with π-conjugated framework, inherent porosity and tunable structure have been considered as the promising platforms as electrocatalysts for carbon dioxide reduction reaction (CO2RR). Promoting the proton transfer dynamic to modulate microenvironment of active sites in CMPs plays an important role on the improvement of their electrocatalytic activity. Herein, we developed a series of novel porphyrinic conjugated microporous polyanilines (CMPANIs) constructed from tetrabromo-cobalt(II) porphyrin and diamino aromatics by the Buchwald–Hartwig coupling polymerization approach. Owing to the three-dimensional geometry of these polymeric skeleton, microenvironment of catalytic CoN4 site could be readily regulated by incorporation of nitrogen-doped diamino aromatic, leading to the enhancement of electrocatalytic activity for the carbon monoxide (CO) production. Notably, pyrazine-containing CMPANI (CMPANI-3) shows the high CO Faradaic efficiency (FECO) (97% at −0.7 V vs. RHE), excellent turnover frequency (TOF) (1691 h−1 at −0.7 V vs. RHE) and large current density (>200 mA cm−2). The kinetic isotope effect results indicate that the pyrazinyl-N in CMPANI-3 facilitates the efficient proton absorption and transfer. Moreover, in-situ Fourier transform infrared spectra demonstrate that the protonated pyrazinyl-N would promote the generation and stabilization of *COOH intermediate via the coordination interaction around CoN4 site, thus favoring the electroreduction of CO2-to-CO conversion. This work provides a new sight in the design of polymeric electrocatalyst system with superior electron and proton transport for boosting CO2RR applications.

Keywords: conjugated microporous polyaniline, proton transfer, catalytic microenvironment, Electrocatalysis, Carbon dioxide reduction

Suggested Citation

Qiu, Feng and Li, Chunyan and Xuan, Xiaodong and Huang, Senhe and Lu, Chenbao and Lin, Hualin and Han, Sheng and Zhuang, Xiaodong and Wong, Wai-Yeung, Promoting Co2 Electroreduction Activity of Porphyrinic Conjugated Microporous Polyanilines Via Accelerating Proton Transfer Dynamics. Available at SSRN: https://ssrn.com/abstract=4868142 or http://dx.doi.org/10.2139/ssrn.4868142

Feng Qiu

Shanghai Institute of Technology ( email )

China

Chunyan Li

Shanghai Institute of Technology ( email )

China

Xiaodong Xuan

Shanghai Institute of Technology ( email )

China

Senhe Huang

affiliation not provided to SSRN ( email )

No Address Available

Chenbao Lu (Contact Author)

affiliation not provided to SSRN ( email )

No Address Available

Hualin Lin

Shanghai Institute of Technology ( email )

China

Sheng Han

Shanghai Institute of Technology - School of Chemical and Environmental Engineering ( email )

Shanhai
China

Xiaodong Zhuang

affiliation not provided to SSRN ( email )

No Address Available

Wai-Yeung Wong

Hong Kong Polytechnic University ( email )

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