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- W4367318955 abstract "Cu1.97Se-x wt.% In2O3 (x = 0–1) bulk composites are fabricated by combining high-temperature melting and spark plasma sintering technology. The doping of In3+in Cu vacancies tunes the carrier concentration and modifies the band structure of Cu1.97Se. Additionally, excessive In2O3 particles benefit the construction of multiple lattice defects to strengthen phonon scattering and suppress the long-range migration of Cu ions, resulting in obviously reduced thermal conductivity and improved service stability. Ultimately, a peak ZT value of 1.43 is obtained at 873 K for the Cu1.97Se-0.5 wt.% In2O3 bulk specimen, which is almost 150% higher than that of pristine sample. The thermoelectric conversion efficiency and mechanical properties of the composites sample are also measured. The results suggest that Cu1.97Se-based nanocomposites offer potential for use in power generation device assembly." @default.
- W4367318955 created "2023-04-29" @default.
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- W4367318955 date "2023-09-01" @default.
- W4367318955 modified "2023-09-28" @default.
- W4367318955 title "High-performance copper selenide nanocomposites for power generation" @default.
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- W4367318955 doi "https://doi.org/10.1016/j.jeurceramsoc.2023.04.052" @default.
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