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Solution-Processed Hole-Doped SnSe Thermoelectric Thin-Film Devices for Low-Temperature Power Generation

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Title
Solution-Processed Hole-Doped SnSe Thermoelectric Thin-Film Devices for Low-Temperature Power Generation
Author(s)
Heo, Seung Hwae; Yoo, Jisu; Lee, Hyejeong; Jang, Hanhwi; Jo, Seungki; Cho, Jeongmin; Baek, Seongheon; Yang, Seong Eun; Gu, Da Hwi; Mun, Hyun Jung; Oh, Min-Wook; Shin, Hosun; Moon Kee Choi; Shin, Tae Joo; Son, Jae Sung
Publication Date
2022-06
Journal
ACS Energy Letters, v.7, no.6, pp.2092 - 2101
Publisher
American Chemical Society
Abstract
© 2022 American Chemical Society.Owing to the increase in the demand for energy autonomy in electronic systems, there has been increased research interest in thermoelectric thin-film-based energy harvesters. However, the fabrication of such devices is challenging when considering material performance and integration processes. SnSe has emerged as among the best bulk thermoelectric materials capable of functioning at high temperatures; however, the thermoelectric performance of thin films is still limited. Herein, we present a solution-processed fabrication of high-performance Ag-doped SnSe thin films operable in a low-temperature range. The Ag doping induces the preferred crystallographic orientation and grain growth in the b-c plane (in-plane) of SnSe, consequently enhancing thermoelectric performance at low temperatures. Moreover, thin-film wrinkling and photolithography are employed in the fabrication of stretchable and patterned devices, in which power generation performance is then evaluated, thereby demonstrating the feasibility of the proposed thin films as an energy harvester in emerging electronic systems.
URI
https://pr.ibs.re.kr/handle/8788114/12924
DOI
10.1021/acsenergylett.2c01056
ISSN
2380-8195
Appears in Collections:
Center for Nanoparticle Research(나노입자 연구단) > 1. Journal Papers (저널논문)
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