Anisotropic temperature-dependent thermal conductivity by an Al2O3 interlayer in Al2O3/ZnO superiattice films

  • Lee, Won-Yong; 
  • Lee, Jung-Hoon; 
  • Ahn, Jae-Young; 
  • Park, Tae-Hyun; 
  • Park, No-Won; 
  • ... Lee, Sang-Kwon; 
  • 외 2명
Citations

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18
Citations

SCOPUS

16

초록

The thermal conductivity of superlattice films is generally anisotropic and should be studied separately in the in-plane and cross-plane directions of the films. However, previous works have mostly focused on the cross-plane thermal conductivity because the electrons and phonons in the cross-plane direction of superlattice films may result in much stronger interface scattering than that in the in-plane direction. Nevertheless, it is highly desirable to perform systematic studies on the effect of interface formation in semiconducting superlattice films on both in-plane and cross-plane thermal conductivities. In this study, we determine both the in-plane and cross-plane thermal conductivities of Al2O3 (AO)/ZnO superlattice films grown by atomic layer deposition (ALD) on SiO2/Si substrates in the temperature range of 50-300 K by the four-point-probe 3-omega method. Our experimental results indicate that the formation of an atomic AO layer (0.82 nm) significantly contributes to the decrease of the cross-plane thermal conductivity of the AO/ZnO superlattice films compared with that of AO/ZnO thin films. The cross-plane thermal conductivity (0.26-0.63W m(-1) K-1 of the AO/ZnO superlattice films (with an AO layer of similar to 0.82 nm thickness) is approximately similar to 150%-370% less than the in-plane thermal conductivity (0.96-1.19W m-1 K-1) of the corresponding film, implying significant anisotropy. This indicates that the suppression of the cross-plane thermal conductivity is mainly attributed to the superlattice, rather than the nanograin columnar structure in the films. In addition, we theoretically analyzed strong anisotropic behavior of the in-plane and cross-plane thermal conductivities of the AO/ZnO superlattice films in terms of temperature dependence.

키워드

thermal conductivity; superlattice films; phonon scattering; 3-omega measurement; ENHANCED THERMOELECTRIC PROPERTIES; THIN-FILMS; SUPERLATTICE STRUCTURES; 3-OMEGA METHOD; REDUCTION; NANOWIRES; ANTIMONY; SB2TE3; INTERFACE; DEVICES
제목
Anisotropic temperature-dependent thermal conductivity by an Al2O3 interlayer in Al2O3/ZnO superiattice films
저자
Lee, Won-Yong; Lee, Jung-Hoon; Ahn, Jae-Young; Park, Tae-Hyun; Park, No-Won; Kim, Gil-Sung; Park, Jin-Seong; Lee, Sang-Kwon
DOI
10.1088/1361-6528/aa5985
발행일
2017-03
유형
Article
저널명
Nanotechnology
권
28
호
10