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Growth of quantum dot coated core-shell anisotropic nanowires for improved thermal and electronic transport
- Hou, Bo;
- Jung, Su-Ho;
- Zhang, Jingchao;
- Hong, Yang;
- Kim, Byung-Sung;
- ... Sohn, Jung Inn;
- 외 5명
WEB OF SCIENCE
6SCOPUS
6초록
Anisotropic nanowires are promising candidates for electronic thermal management due to their unique electrical and thermal properties. However, eco-friendly solution-processed nanomaterials with an elaborate morphology and microstructure for modulating thermal and charge transfer are still a considerable challenge. Herein, we present a simple but effective approach for synthesizing pseudo core-shell nanowires through quantum dot (QD)-like nanostructure coating (p-NW@QD) to generate exceptional electron-phonon transport properties. With the assistance of diphenyl ether as a coordination solvent, high crystallinity lead sulfide NWs can be fabricated with a large aspect ratio together with uniform QD coating. This p-NW@QD exhibits high electronic mobility (30.65cm(2)/Vs) as well as a diameter independent low thermal conductivity (1.53 +/- 1W/mK). Direct charge/heat carrier flow measurements and computational simulations demonstrate that the unusual electrical and thermal transport phenomenon is strongly dependent on the fast charge transport through the QD shell, and a slow phonon migration across the Umklapp process dominated NW cores. These findings indicate a significant step toward colloidal synthesis nanostructures for future high-performance nanoelectronics and thermal energy devices.
키워드
- 제목
- Growth of quantum dot coated core-shell anisotropic nanowires for improved thermal and electronic transport
- 저자
- Hou, Bo; Jung, Su-Ho; Zhang, Jingchao; Hong, Yang; Kim, Byung-Sung; Sohn, Jung Inn; Lee, Eun Kyung; Choi, Byoung Lyong; Whang, Dongmok; Cha, SeungNam; Kim, Jong Min
- 발행일
- 2019-06-17
- 유형
- Article
- 권
- 114
- 호
- 24