Interfacial and chemical properties of Pt/TiO(2), Pd/TiO(2), and Pt/GaN catalytic nanodiodes influencing hot electron flow

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The influence of physical and chemical properties of Pt/TiO(2), Pd/TiO(2), and Pt/GaN metal-semiconductor Schottky diodes on the yield of collected hot electron flow (number of hot electrons per product molecule) was investigated. We measured both the chemicurrent (electron flow) and chemical turnover rate during oxidation of carbon monoxide (at pressures of 100 Torr of O(2) and 40 Torr of CO in the 373-513 K range) using reaction systems equipped for simultaneous reaction rate and current measurements. The chemicurrent was found to be correlated with the turnover rate and can be used to detect the turnover rate for the three diodes. Thermoelectric current was observed in the presence of O(2) or CO gas in the absence of catalytic reaction. The chemicurrent was observed only under catalytic reaction condition. The chemicurrent yield of Pt/GaN ((3.5 +/- 0.8) x 10(-3)) was higher than that of Pt/TiO(2) or Pd/TiO(2) ((2-3) x 10(-4)) by 1 order of magnitude. We found that the metal-semiconductor interface structure (roughness, grain size, and step-terrace) is important in controlling the magnitude of chemicurrent yield.
Publisher
AMER CHEMICAL SOC
Issue Date
2007-10
Language
English
Article Type
Article
Keywords

METAL-SUPPORT INTERACTION; SCHOTTKY DIODES; BARRIER HEIGHT; CO OXIDATION; SURFACES; HYDROGEN; NANOPARTICLES; DYNAMICS; GAN; ADSORPTION

Citation

JOURNAL OF PHYSICAL CHEMISTRY C, v.111, no.42, pp.15331 - 15336

ISSN
1932-7447
DOI
10.1021/jp074562h
URI
http://hdl.handle.net/10203/90635
Appears in Collection
EEW-Journal Papers(저널논문)
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