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Temperature dependent thermal conductivity and transition mechanism in amorphous and crystalline Sb2

上海光学精密机械研究所 免费考研网/2018-05-06

外文题目: Temperature dependent thermal conductivity and transition mechanism in amorphous and crystalline Sb2Te3 thin films
作者: Li, Qisong; Wei, Jingsong; Sun, Hao; Zhang, Kui; Huang, Zhengxing; Zhang, Long
刊名: Sci Rep
年: 2017 卷: 7 文章编号:13747
英文关键词:

PHASE-CHANGE MATERIALS; DATA-STORAGE; MEMORY CELL; LITHOGRAPHY; BI2SE3
英文摘要:
Sb2Te3 thin films are widely used in high density optical and electronic storage, high-resolution greyscale image recording, and laser thermal lithography. Thermal conductivity and its temperature dependence are critical factors that affect the application performance of thin films. This work aims to evaluate the temperature dependence of thermal conductivity of crystalline and amorphous Sb2Te3 thin films experimentally and theoretically, and explores into the corresponding mechanism of heat transport. For crystalline Sb2Te3 thin films, the thermal conductivity was found to be 0.35 +/- 0.035 W m(-1) K-1 and showed weak temperature dependence. The thermal conductivity of amorphous Sb2Te3 thin films at temperatures below similar to 450 K is about 0.23 +/- 0.023 W m(-1)K(-1), mainly arising from the lattice as the electronic contribution is negligible; at temperatures above 450 K, the thermal conductivity experiences an abrupt increase owing to the structural change from amorphous to crystalline state. The work can provide an important guide and reference to the real applications of Sb2Te3 thin films.


文献类型: 期刊论文
正文语种: English
收录类别: SCI
DOI: 10.1038/s41598-017-14068-7


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