Copper Sulfide–Zinc Sulfide Janus Nanoparticles and Their Seebeck Characteristics for Sustainable Thermoelectric Materials

A heterostructured copper sulfide–zinc sulfide nanocomposite is explored as a new class of low temperature and sustainable thermoelectric materials. The nanoparticles are created through a wet chemical synthetic technique and display a remarkable Janus structure. These nanoparticles are processed as...

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Veröffentlicht in:Journal of physical chemistry. C 2016-03, Vol.120 (11), p.5869-5875
Hauptverfasser: Shimose, Hiroyuki, Singh, Maninder, Ahuja, Dipali, Zhao, Wei, Shan, Shiyao, Nishino, Shunsuke, Miyata, Masanobu, Higashimine, Koichi, Mott, Derrick, Koyano, Mikio, Luo, Jin, Zhong, C. J, Maenosono, Shinya
Format: Artikel
Sprache:eng
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Zusammenfassung:A heterostructured copper sulfide–zinc sulfide nanocomposite is explored as a new class of low temperature and sustainable thermoelectric materials. The nanoparticles are created through a wet chemical synthetic technique and display a remarkable Janus structure. These nanoparticles are processed as building blocks by molecular linking with short alkyl chain ligands to enhance their electrical conductivity. The nanomaterials are pressed into a pellet and subjected to subsequent thermal annealing to remove volatiles and enhance particle contacts through sintering. The resulting nanocomposite materials were characterized to assess the thermoelectric characteristics, revealing P-type conductivity.
ISSN:1932-7447
1932-7455
DOI:10.1021/acs.jpcc.5b11857