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A Strategy for Low Thermal Conductivity and Enhanced Thermoelectric Performance in SnSe: Porous SnSe1-xSx Nanosheets

Authors
Ju, HyunKim, MyeongjinPark, DabinKim, Jooheon
Issue Date
11-Apr-2017
Publisher
AMER CHEMICAL SOC
Citation
CHEMISTRY OF MATERIALS, v.29, no.7, pp 3228 - 3236
Pages
9
Journal Title
CHEMISTRY OF MATERIALS
Volume
29
Number
7
Start Page
3228
End Page
3236
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/4572
DOI
10.1021/acs.chemmater.7b00423
ISSN
0897-4756
1520-5002
Abstract
A higher figure of merit (ZT) can be achieved for tin selenide (SnSe)-based thermoelectric materials by significantly reducing the thermal conductivity (kappa) via three promising strategies: substitution with isoelectric atoms, exfoliation of nanosheets (NSs) from a bulk ingot, and chemical transformation of the material into a porous structure. Specifically, SnSe1-xSx NSs are prepared from bulk ingots by hydrothermal Li intercalation and subsequent exfoliation. The substitution of S atoms into SnSe and the fabrication of SnSe1-xSx NSs contribute to the scattering of phonons at a number of atomic disorders and nanosized boundaries, leading to effective reduction of the lc value and an improved ZT. The introduction of porosity into the material through the chemical transformation process results in further reduction of kappa, which leads to a higher ZT. The fabricated porous SnSe0.8S0.2 NS has a maximal ZT value of 0.12 at 310 K, which is significantly higher than that of pristine SnSe.
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대학원 (지능형에너지산업융합학과)
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