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Thermoelectric properties of carbon nanotube and nanofiber based ethylene-octene copolymer composites for thermoelectric devices

机译:碳纳米管和纳米纤维基乙烯-辛烯共聚物复合材料的热电性能

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摘要

Polymer composites have been created from multiwalled carbon nanotubes or carbon nanofibers and ethylene-octene copolymer. The composites have thermoelectric properties and exhibit thermoelectric effect, that is, the conversion of temperature differences into electricity. The thermoelectric efficiency of created composites with nanotube or nanofiber concentration of 30 wt% evaluated by a thermoelectric power at room temperature is 13.3 V/K and 14.2 V/K, respectively. The flexible thermoelectric device (thermopile) was constructed with three different composite legs to produce electric current and the output voltage was measured in the range of temperature difference from -15 to 25°C. © 2013 P. Slobodian et al.
机译:聚合物复合材料是由多壁碳纳米管或碳​​纳米纤维和乙烯-辛烯共聚物制成的。该复合材料具有热电性质并表现出热电效应,即,将温差转换成电。通过室温下的热电功率评估的纳米管或纳米纤维浓度为30 wt%的复合材料的热电效率分别为13.3 V / K和14.2 V / K。柔性热电装置(热电堆)由三个不同的复合支脚构成,以产生电流,并在-15至25°C的温差范围内测量输出电压。 ©2013 P.Slobodian等人。

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