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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Increasing the thermoelectric power generated by composite films using chemically functionalized single-walled carbon nanotubes
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Increasing the thermoelectric power generated by composite films using chemically functionalized single-walled carbon nanotubes

机译:使用化学功能化的单壁碳纳米管增加复合膜产生的热电功率

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We prepared and characterized flexible thermoelectric (TE) materials based on thin films of single-walled carbon nanotube (SWCNT) composites with polyvinylalcohol. While pristine SWCNTs incorporated in a polymer matrix generated a p-type TE material, chemical func-tionalization of SWCNTs by using polyethyleneimine produced an n-type TE material. TE modules made of both p- and n-type composite were fabricated to demonstrate TE voltage and power generation. A single p-n junction made of two composite strips containing 20 wt.% of SWCNTs generated a high TE voltage of 92 nV per 1K temperature gradient (AT). By combining five electrically connected p-n junctions an output voltage of 25 mV was obtained upon the applying AT = 50 K. Furthermore, this module generated a power of 4.5 nW when a load resistance matched the internal module resistance of 30 kΩ. These promising results show the potential of TE energy conversion provided by the SWCNT composite films connected in scalable modules for applications that require light weight and mechanical flexibility.
机译:我们基于具有聚乙烯醇的单壁碳纳米管(SWCNT)复合材料的薄膜制备并表征了柔性热电(TE)材料。结合在聚合物基质中的原始SWCNT生成p型TE材料,而通过使用聚乙烯亚胺对SWCNT进行化学功能化则生成了n型TE材料。制造了由p型和n型复合材料制成的TE模块,以演示TE电压和发电。由包含20 wt%的SWCNT的两个复合带制成的单个p-n结点每1K温度梯度(AT)产生92 nV的高TE电压。通过组合五个电连接的p-n结,在施加AT = 50 K时获得25 mV的输出电压。此外,当负载电阻与内部模块电阻30kΩ匹配时,该模块产生4.5 nW的功率。这些令人鼓舞的结果表明,SWCNT复合膜以可伸缩模块连接的TE能量转换潜力巨大,适用于要求轻量化和机械柔韧性的应用。

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