Mitigating Cobalt Phthalocyanine Aggregation in Electrocatalyst Films through Codeposition with an Axially Coordinating Polymer

Author:

Dean William S.1ORCID,Soucy Taylor L.1ORCID,Rivera‐Cruz Kevin E.1ORCID,Filien Leila L.1ORCID,Terry Bradley D.1ORCID,McCrory Charles C. L.12ORCID

Affiliation:

1. Department of Chemistry University of Michigan Ann Arbor Michigan 48109 USA

2. Macromolecular Science and Engineering Program University of Michigan Ann Arbor Michigan 48109 USA

Abstract

AbstractCobalt phthalocyanine (CoPc) is a promising molecular catalyst for aqueous electroreduction of CO2, but its catalytic activity is limited by aggregation at high loadings. Codeposition of CoPc onto electrode surfaces with the coordinating polymer poly(4‐vinylpyridine) (P4VP) mitigates aggregation in addition to providing other catalytic enhancements. Transmission and diffuse reflectance UV–vis measurements demonstrate that a combination of axial coordination and π‐stacking effects from pyridyl moieties in P4VP serve to disperse cobalt phthalocyanine in deposition solutions and help prevent reaggregation in deposited films. Polymers lacking axial coordination, such as Nafion, are significantly less effective at cobalt phthalocyanine dispersion in both the deposition solution and in the deposited films. SEM images corroborate these findings through particle counts and morphological analysis. Electrochemical measurements show that CoPc codeposited with P4VPonto carbon electrode surfaces reduces CO2 with higher activity and selectivity compared to the catalyst codeposited with Nafion.

Funder

National Science Foundation Graduate Research Fellowship Program

Publisher

Wiley

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