2022
DOI: 10.1039/d1fd00070e
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Computationally driven design of an artificial metalloenzyme using supramolecular anchoring strategies of iridium complexes to alcohol dehydrogenase

Abstract: Artificial metalloenzymes (ArMs) confer non-biological reactivities to biomolecules, whilst taking advantage of the biomolecular architecture in terms of selectivity and of renewable origin. In particular, ArMs design by supramolecular anchoring...

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Cited by 4 publications
(1 citation statement)
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“…Where the I (A) is the value of the catalytic current (directly given by the electrochemical workstation), α is the number of transferred electrons corresponding to the half-reaction that generates a molecule of a target product or consumes a molecule of target reactant (the reaction equation Coefficient of electrons), N (mol) is the number of catalytically active sites, 94 and F (C/mol) is the Faraday constant. 95 …”
Section: Key Criterion For Evaluating the Performance Of Homogeneous ...mentioning
confidence: 99%
“…Where the I (A) is the value of the catalytic current (directly given by the electrochemical workstation), α is the number of transferred electrons corresponding to the half-reaction that generates a molecule of a target product or consumes a molecule of target reactant (the reaction equation Coefficient of electrons), N (mol) is the number of catalytically active sites, 94 and F (C/mol) is the Faraday constant. 95 …”
Section: Key Criterion For Evaluating the Performance Of Homogeneous ...mentioning
confidence: 99%