Publication | Open Access
Enhanced Thermoelectric Performance of Cu2SnSe3-Based Composites Incorporated with Nano-Fullerene
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Citations
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References
2016
Year
In this study, nano-sized fullerene C<sub>60</sub> powder was sufficiently mixed with Cu₂SnSe₃ powder by ball milling method, and the C<sub>60</sub>/Cu₂SnSe₃ composites were prepared by spark plasma sintering technology. The fullerene C<sub>60</sub> distributed uniformly in the form of clusters, and the average cluster size was less than 1 μm. With increasing C<sub>60</sub> content, the electrical conductivity of C<sub>60</sub>/Cu₂SnSe₃ composites decreased, while the Seebeck coefficient was enhanced. The thermal conductivity of composites decreased significantly, which resulted from the phonon scattering by the C<sub>60</sub> clusters located on the grain boundaries of the Cu₂SnSe₃ matrix. The highest figure of merit <i>ZT</i> of 0.38 was achieved at 700 K for 0.8% C<sub>60</sub>/Cu₂SnSe₃ composite.
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