Literature DB >> 29450417

Enhanced magnetic and thermoelectric properties in epitaxial polycrystalline SrRuO3 thin films.

Sungmin Woo1, Sang A Lee, Hyeona Mun, Young Gwan Choi, Chan June Zhung, Soohyeon Shin, Morgane Lacotte, Adrian David, Wilfrid Prellier, Tuson Park, Won Nam Kang, Jong Seok Lee, Sung Wng Kim, Woo Seok Choi.   

Abstract

Transition metal oxide thin films show versatile electric, magnetic, and thermal properties which can be tailored by deliberately introducing macroscopic grain boundaries via polycrystalline solids. In this study, we focus on the modification of magnetic and thermal transport properties by fabricating single- and polycrystalline epitaxial SrRuO3 thin films using pulsed laser epitaxy. Using the epitaxial stabilization technique with an atomically flat polycrystalline SrTiO3 substrate, an epitaxial polycrystalline SrRuO3 thin film with the crystalline quality of each grain comparable to that of its single-crystalline counterpart is realized. In particular, alleviated compressive strain near the grain boundaries due to coalescence is evidenced structurally, which induced the enhancement of ferromagnetic ordering of the polycrystalline epitaxial thin film. The structural variations associated with the grain boundaries further reduce the thermal conductivity without deteriorating the electronic transport, and lead to an enhanced thermoelectric efficiency in the epitaxial polycrystalline thin films, compared with their single-crystalline counterpart.

Entities:  

Year:  2018        PMID: 29450417     DOI: 10.1039/c7nr09627e

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  1 in total

1.  Epitaxial lift-off of freestanding (011) and (111) SrRuO3 thin films using a water sacrificial layer.

Authors:  Phu T P Le; Johan E Ten Elshof; Gertjan Koster
Journal:  Sci Rep       Date:  2021-06-14       Impact factor: 4.379

  1 in total

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