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A novel chemical process of Bi2Te2.7Se0.3 nanocompound for effective adjustment in transport properties resulting in remarkable n-type thermoelectric performance
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Title
A novel chemical process of Bi2Te2.7Se0.3 nanocompound for effective adjustment in transport properties resulting in remarkable n-type thermoelectric performance
Issued Date
2016-07
Citation
Kim, Cham. (2016-07). A novel chemical process of Bi2Te2.7Se0.3 nanocompound for effective adjustment in transport properties resulting in remarkable n-type thermoelectric performance. Scripta Materialia, 119, 13–16. doi: 10.1016/j.scriptamat.2016.03.010
Type
Article
Author Keywords
Thermoelectric materialsNanostructureBismuth tellurideThermal conductivityElectrical conductivity
Keywords
BI2TE3-XSEX NANOPLATELET COMPOSITESBISMUTH TELLURIDEChemical ProcessChemical Reaction ProcessChemical ReactionsElectric ConductivityElectrical ConductivityHIGH-FIGUREIndicators (chemical)MERITNanostructureNanostructuresSynergistic EffectThermal ConductivityThermo-Electric MaterialsThermoelectric MaterialsThermoelectric PerformanceThermoelectric Transport PropertiesThermoelectricityTRANSPORT PROPERTIESTransportation Routes
ISSN
1359-6462
Abstract
Chemical reaction processes for thermoelectric nanomaterials have received a lot of attention because of subsequent small and uniform nanostructures, causing a remarkable reduction in thermal conductivity; however, they typically showed low electrical properties possibly due to contaminations by chemicals resulting in low ZT. We devised a new chemical process for synthesizing an n-type Bi2Te2.7Se0.3 nanocompound without the chemicals causing potential contaminations. The product exhibited a predominant electrical conductivity while retaining the advantage of chemical reaction routes; thus, synergistic effect of the thermoelectric transport properties was greatly induced, resulting in the highest ZT among n-type Bi2Te3 materials in bulk phase. © 2016 Elsevier B.V. All rights reserved.
URI
http://hdl.handle.net/20.500.11750/5094
DOI
10.1016/j.scriptamat.2016.03.010
Publisher
Elsevier Ltd
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김참
Kim, Cham김참

Division of Nanotechnology

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