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Systematic Conversion of Single Walled Carbon Nanotubes into n-type Thermoelectric Materials by Molecular Dopants

机译:分子掺杂剂将单壁碳纳米管系统转化为n型热电材料

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摘要

Thermoelectrics is a challenging issue for modern and future energy conversion and recovery technology. Carbon nanotubes are promising active thermoelectic materials owing to their narrow bandgap energy and high charge carrier mobility, and they can be integrated into flexible thermoelectrics that can recover any waste heat. We here report air-stable n-type single walled carbon nanotubes with a variety of weak electron donors in the range of HOMO level between ca. −4.4 eV and ca. −5.6 eV, in which partial uphill electron injection from the dopant to the conduction band of single walled carbon nanotubes is dominant. We display flexible films of the doped single walled carbon nanotubes possessing significantly large thermoelectric effect, which is applicable to flexible ambient thermoelectric modules.
机译:对于现代和未来的能量转换和回收技术,热电学是一个具有挑战性的问题。碳纳米管因其窄的带隙能和高的载流子迁移率而成为有希望的活性热电材料,并且可以集成到可以回收任何废热的柔性热电中。我们在这里报告了空气稳定的n型单壁碳纳米管,其在HOMO能级之间的各种弱电子供体之间。 −4.4 eV和ca. -5.6 eV,其中从掺杂剂到单壁碳纳米管的导带的部分上坡电子注入占主导地位。我们展示了具有显着大的热电效应的掺杂单壁碳纳米管的柔性膜,该膜适用于柔性环境热电模块。

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