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Given that more than two thirds of all energy is lost, mostly as waste heat, in utilization processes worldwide, thermoelectric materials, which can directly convert waste heat to electricity, provide an alternative option for optimizing energy utilization processes. After the prediction that superlattices may show high thermoelectric performance, various methods based on quantum effects and superlattice...
BiCuSeO oxyselenide is a promising oxide-based thermoelectric material in the moderate temperature range, but the low electrical conductivity inhibits its further application in the field of thermoelectric materials. In this paper, we report on the effects that composite structures have an enhancement to the electrical conductivity of BiCuSeO. Here, a series of two-phase nanocomposites comprising...
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