Temperature-Dependent Thermal Conductivity of Single-Phase Antimony Thin Films: An Experimental and Theoretical Approach

  • Lee, Won-Yong; 
  • Cho, Sang-Hyeok; 
  • Park, No-Won; 
  • Cho, Nam-Kyu; 
  • Lee, Sang-Kwon
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초록

In this report, we report both experimental and theoretical studies of the temperature-dependent thermal conductivity of single-phase antimony (Sb) thin films in the temperature ranges of 30-300 K. For this study, we used 100-nm and 200-nm-thick Sb thin films, which were prepared by e-beam evaporation method at room temperature. The measured thermal conductivities of two thin films, which were evaluated by four-point-prove 3-omega method, were in the range of 8.5-37.8 W/m.K in the temperature range of 30-300 K. This result shows clear film thickness and grain size dependences on the thermal conductivity of the films. The experimental results were also theoretically analyzed with both a modified Callaway and Sondheimer models and we found that the theoretical approach corresponds well with the experimental results.

키워드

Thermal Conductivity; Antimony; 3-omega Technique; Thermal Transport; Sondheimer Model; Callaway Model; SILICON NANOWIRES; THERMOELECTRIC PERFORMANCE; TRANSPORT; BISMUTH; ALLOYS; FIGURE; MERIT
제목
Temperature-Dependent Thermal Conductivity of Single-Phase Antimony Thin Films: An Experimental and Theoretical Approach
저자
Lee, Won-Yong; Cho, Sang-Hyeok; Park, No-Won; Cho, Nam-Kyu; Lee, Sang-Kwon
DOI
10.1166/jno.2015.1773
발행일
2015-06
유형
Article
저널명
Journal of Nanoelectronics and Optoelectronics
권
10
호
3
페이지
355 ~ 360