Layer dependence of out-of-plane electrical conductivity and Seebeck coefficient in continuous mono- to multilayer MoS2 films

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초록

We report on a direct comparison of the out-of-plane thermoelectric properties, such as Seebeck coefficient and electrical conductivity, of atomically thin MoS2 films. The films were prepared by a chemical vapor deposition method and were simultaneously investigated using a Cu-sandwiched structure. Specifically, this is the first study that measures the out-of-plane Seebeck coefficients of atomically thin mono- and bilayer MoS2 at 300 K. At room temperature, out-of-plane Seebeck coefficients for MoS2 films with one, two, and seven layers were measured to be approximately 129.4, 143.3, and 152.2 mu V/K, respectively. Such behavior is seen because the increasing number of MoS2 layers increases the density of states of a system. In contrast to conventional thermoelectric materials, the electrical conductivities of these MoS2 films have the same tendency as the Seebeck coefficients. Our results show that thermoelectric devices can utilize the out-of-plane properties of MoS2 thin films with high power factors.

키워드

THERMOELECTRIC PERFORMANCE; DEVICES; SCALE; THERMOPOWER; GRAPHENE; POWER
제목
Layer dependence of out-of-plane electrical conductivity and Seebeck coefficient in continuous mono- to multilayer MoS2 films
저자
Lee, Won-Yong; Kang, Min-Sung; Park, No-Won; Kim, Gil-Sung; Nguyen, Anh Duc ; Choi, Jae Won; Yoon, Young-Gui; Kim, Yong Soo; Jang, Ho Won; Saitoh, Eiji; Lee, Sang-Kwon
DOI
10.1039/d1ta07854b
발행일
2021-12-07
유형
Article
저널명
Journal of Materials Chemistry A
권
9
호
47
페이지
26896 ~ 26903