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Journal of Applied Physics : Thermal transport properties of nanocrystalline Bi…Sb…Te thin films prepared by sputter deposition

By Chien-Neng Liao, Yu-Chu Wang, and Hsu-Shen Chu

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Book Id: WPLBN0002169447
Format Type: PDF eBook :
File Size: Serial Publication
Reproduction Date: 20 November 2008

Title: Journal of Applied Physics : Thermal transport properties of nanocrystalline Bi…Sb…Te thin films prepared by sputter deposition  
Author: Chien-Neng Liao, Yu-Chu Wang, and Hsu-Shen Chu
Volume: Issue : November 2008
Language: English
Subject: Science, Physics, Natural Science
Collections: Periodicals: Journal and Magazine Collection (Contemporary), Journal of Applied Physics Collection
Historic
Publication Date:
Publisher: American Institute of Physics

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Yu-Chu Wang, And Hsu-Shen Ch, C. L. (n.d.). Journal of Applied Physics : Thermal transport properties of nanocrystalline Bi…Sb…Te thin films prepared by sputter deposition. Retrieved from http://community.worldlibrary.net/


Description
Description: Grain-size dependent thermal conductivity of sputtered nanocrystalline Bi–Sb–Te thin films was measured by a 3ω method. By changing deposition temperature from 100 °C to room temperature, the mean grain size of the Bi–Sb–Te films decreased from 83 to 26 nm and the lattice thermal conductivity reduced from 0.79 to 0.45 W/mK proportionally. The effect of grain boundary on lattice thermal conductivity can be described by an effective thermal boundary resistance that was determined in the range of 0.56–1.8×10−8 m2K/W for the nanocrystalline Bi–Sb–Te thin films studied.

 

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