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Preparation of Pt/SnO2 core-shell nanowires with enhanced ethanol gas- and photon-sensing properties
Journal article   Peer reviewed

Preparation of Pt/SnO2 core-shell nanowires with enhanced ethanol gas- and photon-sensing properties

Yu-Hung Lin, Yang-Chih Hsueh, Po-Sheng Lee, Chih-Chieh Wang, Jiann-Ruey Chen, Jyh-Ming Wu, Tsong-Pyng Perng and Han C. Shih
Journal of the Electrochemical Society, Vol.157(9)
2010

Abstract

Pt/SnO 2 core-shell nanowires were prepared by a process that involves thermal evaporation of SnO 2 nanowires and subsequent atomic layer deposition of Pt, and their gas- and photon-sensing properties were investigated systematically. Transmission electron microscopy analysis showed that the Pt shell with a thickness of 8.8 nm is composed of numerous Pt nanoparticles with average diameters of ∼5.3 nm. The Pt/SnO 2 core-shell nanowires with high electrical conductance exhibit remarkably enhanced ethanol gas- and photon-sensing properties due to the surface functionalization resulting from the effective Pt catalyst and the formation of hetero-nanostructures fabricated by the SnO 2 core and Pt shell. © 2010 The Electrochemical Society.

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