材料科学
塞贝克系数
热电效应
热电材料
聚乙烯醇
复合材料
纳米复合材料
碳纳米管
碲化铋
功勋
标度系数
电阻率和电导率
纳米技术
制作
光电子学
热导率
电气工程
医学
物理
替代医学
病理
热力学
工程类
作者
Krisjanis Buks,Jana Andžāne,Lasma Bugovecka,M. V. Katkov,Krišjānis Šmits,Olesja Starkova,Juris Katkevics,Agris Be̅rziņš,Loreta Brauna,Vanda Voikiva,Donāts Erts
标识
DOI:10.1002/admi.202200318
摘要
Abstract The use of organic–inorganic nanocomposites has shown the greatest potential for engineering efficient flexible thermoelectric devices. In this work, a novel approach of encapsulation of as‐grown bismuth selenide‐multiwalled carbon nanotubes (Bi 2 Se 3 ‐MWCNT) hybrid network in polyvinyl alcohol for fabrication of n‐type flexible thermoelectric films is demonstrated as a successful alternative to the mechanically mixed counterparts. The developed stable flexible n‐type thermoelectric material has a Seebeck coefficient and power factor at room temperature as high as −85 μV K −1 and 0.4 μW m −1 K −2 , and figure‐of‐merit, exceeding the value shown by the mixed counterpart by ≈2 orders of magnitude, while requiring 3–4 times less inorganic material in comparison with mixed composites. Charge carrier transport mechanisms and contribution of Bi 2 Se 3 and MWCNT components of not encapsulated and encapsulated hybrid networks to the total Seebeck coefficient, electrical conductance, and power factor are studied. In addition, the fabricated flexible thermoelectric films show good environmental stability at relative humidity levels up to 60%, as well as great mechanical and electrical stability with the increase of resistance within 0.5% and deviations of the Seebeck coefficient within 2% from the initial value during the 100 repetitive bending cycles.
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