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- W3198564457 abstract "The scarcity of highly conductive materials with solution-processable ability and the contradictory relationship between conductivity (σ) and Seebeck coefficient (S), have greatly limited the development of thermoelectric (TE) materials. To address these challenges, we propose a novel strategy from the following two aspects: 1) Highly conductive materials with solution-processable ability are achieved by simply combining platinum-based complexes with Single-walled carbon nanotubes (SWCNTs). Among them, SWCNT/Pt-4 manifests the highest σ (4166.3 S cm−1), which is among the highest for p-type SWCNT-based TE materials; 2) The TE material with high S is applied to the above system to overcome the restrictive relationship between S and σ. The optimized three composites display remarkably higher power factor (PF) than those of either two hybrids at room temperature, and the highest PF is achieved by SWCNT/(Ge0.87Pb0.13Te)0.95(Bi2Te3)0.05/PtCl4 (471.8 μW m−1 K−2) at 420 K. This strategy simultaneously improves the PF of SWCNTs by innovatively introducing a three-phase system in the composites. Our work opens up new material options for TE applications and provides a robust pathway to the development of high-performance TE materials." @default.
- W3198564457 created "2021-09-13" @default.
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- W3198564457 date "2021-11-01" @default.
- W3198564457 modified "2023-09-23" @default.
- W3198564457 title "Effective approaches to produce high performance single-walled carbon nanotubes/platinum based hybrid films by inserting thermoelectric material with high seebeck coefficient" @default.
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- W3198564457 doi "https://doi.org/10.1016/j.jpowsour.2021.230454" @default.
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