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  5. Tuning the Electronic Structure of Titanium Oxide Support to Enhance the Electrochemical Activity of Platinum Nanoparticles

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Article
en
2013

Tuning the Electronic Structure of Titanium Oxide Support to Enhance the Electrochemical Activity of Platinum Nanoparticles

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en
2013
Vol 13 (9)
Vol. 13
DOI: 10.1021/nl402392u

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Gabor Somorjai
Gabor Somorjai

University of California, Berkeley

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Feifei Shi
L. Robert Baker
Antoine Hervier
+2 more

Abstract

Two times higher activity and three times higher stability in methanol oxidation reaction, a 0.12 V negative shift of the CO oxidation peak potential, and a 0.07 V positive shift of the oxygen reaction potential compared to Pt nanoparticles on pristine TiO2 support were achieved by tuning the electronic structure of the titanium oxide support of Pt nanoparticle catalysts. This was accomplished by adding oxygen vacancies or doping with fluorine. Experimental trends are interpreted in the context of an electronic structure model, showing an improvement in electrochemical activity when the Fermi level of the support material in Pt/TiOx systems is close to the Pt Fermi level and the redox potential of the reaction. The present approach provides guidance for the selection of the support material of Pt/TiOx systems and may be applied to other metal-oxide support materials, thus having direct implications in the design and optimization of fuel cell catalyst supports.

How to cite this publication

Feifei Shi, L. Robert Baker, Antoine Hervier, Gabor Somorjai, K. Komvopoulos (2013). Tuning the Electronic Structure of Titanium Oxide Support to Enhance the Electrochemical Activity of Platinum Nanoparticles. , 13(9), DOI: https://doi.org/10.1021/nl402392u.

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Publication Details

Type

Article

Year

2013

Authors

5

Datasets

0

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0

Language

en

DOI

https://doi.org/10.1021/nl402392u

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