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- W4310244102 abstract "Liquid-assisted shear exfoliation (LASE) has been proved previously to be a facile approach for micro-texture engineering and TE performance optimization for TiS2. Furtherly in this work, ionized impurity scattering was introduced by incorporating 4 mol% nano-AgSnSe2 via LASE. In a specific temperature range of 373–573 K, Seebeck coefficient increased exceptionally in correspondence to an exceptional variation of electrical conductivity with growing temperature, featuring an ionized impurity scattering characteristic and contributing to a record high power factor of 18.2 μW cm−1 K−2 at 573 K in the LASE-derived nanocomposite. Moreover, lattice thermal conductivity was further reduced because of enhanced phonon scattering due to intercalation, impurity, and enhanced grain boundary density. Ultimately, a highest ZT of 0.78 at 673 K as a renewed record for TiS2-based materials was achieved, demonstrating an improved effectiveness of the combination of LASE and ionized impurity scattering in optimization of TE performance of TiS2-like layered TE materials." @default.
- W4310244102 created "2022-11-30" @default.
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- W4310244102 date "2023-01-01" @default.
- W4310244102 modified "2023-10-16" @default.
- W4310244102 title "High thermoelectric properties of shear-exfoliation-derived TiS2-AgSnSe2 nano-composites via ionized impurity scattering" @default.
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- W4310244102 doi "https://doi.org/10.1016/j.actamat.2022.118564" @default.
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