A Bifunctional Nonprecious Metal Catalyst for Oxygen Reduction and Water Oxidation

被引:1403
作者
Gorlin, Yelena [1 ]
Jaramillo, Thomas F. [1 ]
机构
[1] Stanford Univ, Dept Chem Engn, Stanford, CA 94305 USA
关键词
MANGANESE OXIDES; FUEL-CELLS; EVOLUTION; ELECTROCATALYSTS; ELECTRODES;
D O I
10.1021/ja104587v
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
There is a growing interest in oxygen electrochemistry as conversions between O-2 and H2O play an important role in a variety of renewable energy technologies. The goal of this work is to develop active bifunctional catalyst materials for water oxidation and oxygen reduction. Drawing inspiration from a cubane-like CaMn4Ox, the biological catalyst found in the oxygen evolving center (OEC) in photosystem II, nanostructured manganese oxide surfaces were investigated for these reactions. Thin films of nanostructured manganese oxide were found to be active for both oxygen reduction and water oxidation, with similar overall oxygen electrode activity to the best known precious metal nanoparticle catalysts: platinum, ruthenium, and iridium. Physical and chemical characterization of the nanostructured Mn oxide bifunctional catalyst reveals an oxidation state of Mn(III), akin to one of the most commonly observed Mn oxidation states found in the OEC.
引用
收藏
页码:13612 / 13614
页数:3
相关论文
共 24 条
[1]   Solar Driven Water Oxidation by a Bioinspired Manganese Molecular Catalyst [J].
Brimblecombe, Robin ;
Koo, Annette ;
Dismukes, G. Charles ;
Swiegers, Gerhard F. ;
Spiccia, Leone .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2010, 132 (09) :2892-+
[2]   Development of supported bifunctional electrocatalysts for unitized regenerative fuel cells [J].
Chen, GY ;
Bare, SR ;
Mallouk, TE .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2002, 149 (08) :A1092-A1099
[3]   MnO2-Based Nanostructures as Catalysts for Electrochemical Oxygen Reduction in Alkaline Media [J].
Cheng, Fangyi ;
Su, Yi ;
Liang, Jing ;
Tao, Zhanliang ;
Chen, Jun .
CHEMISTRY OF MATERIALS, 2010, 22 (03) :898-905
[4]   XPS STUDY OF MNO OXIDATION [J].
DICASTRO, V ;
POLZONETTI, G .
JOURNAL OF ELECTRON SPECTROSCOPY AND RELATED PHENOMENA, 1989, 48 (1-2) :117-123
[5]   Enhanced water electrolysis: Electrocatalytic generation of oxygen gas at manganese oxide nanorods modified electrodes [J].
El-Deab, Mohamed S. ;
Awad, Mohamed I. ;
Mohammad, Ahmad M. ;
Ohsaka, Takeo .
ELECTROCHEMISTRY COMMUNICATIONS, 2007, 9 (08) :2082-2087
[6]   Architecture of the photosynthetic oxygen-evolving center [J].
Ferreira, KN ;
Iverson, TM ;
Maghlaoui, K ;
Barber, J ;
Iwata, S .
SCIENCE, 2004, 303 (5665) :1831-1838
[7]   Activity benchmarks and requirements for Pt, Pt-alloy, and non-Pt oxygen reduction catalysts for PEMFCs [J].
Gasteiger, HA ;
Kocha, SS ;
Sompalli, B ;
Wagner, FT .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2005, 56 (1-2) :9-35
[8]   A GENERALIZED EXPRESSION FOR TAFEL SLOPE AND KINETICS OF OXYGEN REDUCTION ON NOBLE METALS AND ALLOYS [J].
GNANAMUTHU, DS ;
PETROCELLI, JV .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1967, 114 (10) :1036-+
[9]   Ion-containing polymers: new energy & clean water [J].
Hickner, Michael A. .
MATERIALS TODAY, 2010, 13 (05) :34-41
[10]   Nanostructured manganese oxide clusters supported on mesoporous silica as efficient oxygen-evolving catalysts [J].
Jiao, Feng ;
Frei, Heinz .
CHEMICAL COMMUNICATIONS, 2010, 46 (17) :2920-2922