Modeling Dioxygen Reduction at Multicopper Oxidase Cathodes

被引:24
作者
Agbo, Peter [1 ]
Heath, James R. [1 ]
Gray, Harry B. [1 ]
机构
[1] CALTECH, Beckman Inst, Noyes Lab Chem Phys, Pasadena, CA 91125 USA
关键词
ELECTROCATALYTIC OXYGEN REDUCTION; TRINUCLEAR COPPER CLUSTER; RANGE ELECTRON-TRANSFER; ESCHERICHIA-COLI; BIOELECTROCATALYTIC REDUCTION; DIRECT ELECTROCHEMISTRY; BILIRUBIN OXIDASE; O-2; REDUCTION; ACTIVE-SITE; I COPPER;
D O I
10.1021/ja5077519
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We report a general kinetics model for catalytic dioxygen reduction on multicopper oxidase (MCO) cathodes. Our rate equation combines Butler-Volmer (BV) electrode kinetics and the Michaelis-Menten (MM) formalism for enzymatic catalysis, with the BV model accounting for interfacial electron transfer (ET) between the electrode surface and the MCO type 1 copper site. Extending the principles of MM kinetics to this system produced an analytical expression incorporating the effects of subsequent intermolecular ET and dioxygen binding to the trinuclear copper cluster into the cumulative model. We employed experimental electrochemical data on Thermus thermophilus laccase as benchmarks to validate our model, which we suggest will aid in the design of more efficient MCO cathodes. In addition, we demonstrate the model utility in determining estimate for both the electronic coupling and average distance between the laccase type-1 active site and the cathode substrate.
引用
收藏
页码:13882 / 13887
页数:6
相关论文
共 40 条
[1]   Catalysis of Dioxygen Reduction by Thermus thermophilus Strain HB27 Laccase on Ketjen Black Electrodes [J].
Agbo, Peter ;
Heath, James R. ;
Gray, Harry B. .
JOURNAL OF PHYSICAL CHEMISTRY B, 2013, 117 (02) :527-534
[2]  
[Anonymous], 2001, ELECTROCHEMICAL METH
[3]   DIRECT ELECTROCHEMISTRY OF REDOX PROTEINS AT PYROLYTIC-GRAPHITE ELECTRODES [J].
ARMSTRONG, FA ;
HILL, HAO ;
OLIVER, BN ;
WALTON, NJ .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1984, 106 (04) :921-923
[4]   Systematic Perturbation of the Trinuclear Copper Cluster in the Multicopper Oxidases: The Role of Active Site Asymmetry in Its Reduction of O2 to H2O [J].
Augustine, Anthony J. ;
Kjaergaard, Christian ;
Qayyum, Munzarin ;
Ziegler, Lynn ;
Kosman, Daniel J. ;
Hodgson, Keith O. ;
Hedman, Britt ;
Solomon, Edward I. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2010, 132 (17) :6057-6067
[5]   Efficient electrocatalytic oxygen reduction by the 'blue' copper oxidase, laccase, directly attached to chemically modified carbons [J].
Blanford, Christopher F. ;
Foster, Carina E. ;
Heath, Rachel S. ;
Armstrong, Fraser A. .
FARADAY DISCUSSIONS, 2008, 140 :319-335
[6]   A stable electrode for high-potential, electrocatalytic O2 reduction based on rational attachment of a blue copper oxidase to a graphite surface [J].
Blanford, Christopher F. ;
Heath, Rachel S. ;
Armstrong, Fraser A. .
CHEMICAL COMMUNICATIONS, 2007, (17) :1710-1712
[7]  
Bockris J.O'M., 2000, MODERN ELECTROCHEM A
[8]   Enzymes as working or inspirational electrocatalysts for fuel cells and electrolysis [J].
Cracknell, James A. ;
Vincent, Kylie A. ;
Armstrong, Fraser A. .
CHEMICAL REVIEWS, 2008, 108 (07) :2439-2461
[9]   Electron tunneling in single crystals of Pseudomonas aeruginosa azurins [J].
Crane, BR ;
Di Bilio, AJ ;
Winkler, JR ;
Gray, HB .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2001, 123 (47) :11623-11631
[10]   Reaction Mechanisms of the Multicopper Oxidase CueO from Escherichia coli Support Its Functional Role as a Cuprous Oxidase [J].
Djoko, Karrera Y. ;
Chong, Lee Xin ;
Wedd, Anthony G. ;
Xiao, Zhiguang .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2010, 132 (06) :2005-2015