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A biosynthetic model of cytochrome c oxidase as an electrocatalyst for oxygen reduction.


ABSTRACT: Creating an artificial functional mimic of the mitochondrial enzyme cytochrome c oxidase (CcO) has been a long-term goal of the scientific community as such a mimic will not only add to our fundamental understanding of how CcO works but may also pave the way for efficient electrocatalysts for oxygen reduction in hydrogen/oxygen fuel cells. Here we develop an electrocatalyst for reducing oxygen to water under ambient conditions. We use site-directed mutants of myoglobin, where both the distal Cu and the redox-active tyrosine residue present in CcO are modelled. In situ Raman spectroscopy shows that this catalyst features very fast electron transfer rates, facile oxygen binding and O-O bond lysis. An electron transfer shunt from the electrode circumvents the slow dissociation of a ferric hydroxide species, which slows down native CcO (bovine 500 s(-1)), allowing electrocatalytic oxygen reduction rates of 5,000 s(-1) for these biosynthetic models.

SUBMITTER: Mukherjee S 

PROVIDER: S-EPMC4633646 | biostudies-literature | 2015 Oct

REPOSITORIES: biostudies-literature

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A biosynthetic model of cytochrome c oxidase as an electrocatalyst for oxygen reduction.

Mukherjee Sohini S   Mukherjee Arnab A   Bhagi-Damodaran Ambika A   Mukherjee Manjistha M   Lu Yi Y   Dey Abhishek A  

Nature communications 20151012


Creating an artificial functional mimic of the mitochondrial enzyme cytochrome c oxidase (CcO) has been a long-term goal of the scientific community as such a mimic will not only add to our fundamental understanding of how CcO works but may also pave the way for efficient electrocatalysts for oxygen reduction in hydrogen/oxygen fuel cells. Here we develop an electrocatalyst for reducing oxygen to water under ambient conditions. We use site-directed mutants of myoglobin, where both the distal Cu  ...[more]

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