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

Pub. Date : 2015 Oct 12

PMID : 26455726






6 Functional Relationships(s)
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1 A biosynthetic model of cytochrome c oxidase as an electrocatalyst for oxygen reduction. Oxygen cytochrome c oxidase subunit 6A1, mitochondrial Bos taurus
2 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. Oxygen cytochrome c oxidase subunit 6A1, mitochondrial Bos taurus
3 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. Oxygen cytochrome c oxidase subunit 6A1, mitochondrial Bos taurus
4 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. Oxygen cytochrome c oxidase subunit 6A1, mitochondrial Bos taurus
5 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. Oxygen cytochrome c oxidase subunit 6A1, mitochondrial Bos taurus
6 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. Oxygen cytochrome c oxidase subunit 6A1, mitochondrial Bos taurus