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- W4320037576 abstract "The solution-process method can be easily realized without expensive and complicated equipment, which provides the possibility for cost-effective application of flexible thermoelectric films. Nonetheless, the reported output properties of solution-processed Cu2Se based films are not satisfactory due to the absence of effective compositional adjustment and optimal length. In this work, a series of solution-processed nylon-supported flexible Cu2+xSe films have been fabricated. The excess Cu not only fills the vacancies, but also transforms the β-Cu2Se with disordered Cu atoms into long-range ordered lamellar α-Cu2Se, thereby reducing the carrier concentration and improving the carrier mobility of the films. As a result, a high power factor of 856.59 ± 119.92 μW m−1 K−2 has been achieved in the Cu2.20Se film at 303 K. In addition, by numerical simulation, the ideal length of single Cu2.20Se film was calculated to be 2 mm. With an actual temperature difference of 6.6 K, a maximum output power density of 2.918 μW cm−2 K−2, which is superior to those of other p-type flexible thermoelectric films, is realized in the single Cu2.20Se film. This work provides a feasible idea to promote the output performance of solution-processed flexible thermoelectric films." @default.
- W4320037576 created "2023-02-12" @default.
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- W4320037576 date "2023-05-01" @default.
- W4320037576 modified "2023-09-29" @default.
- W4320037576 title "Realization of high output power density in solution-processed flexible α-Cu2Se film by compositional off-stoichiometry and optimization of length" @default.
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- W4320037576 doi "https://doi.org/10.1016/j.apsusc.2023.156719" @default.
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