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Foldable Thermoelectric Materials: Improvement of the Thermoelectric Performance of Directly Spun CNT Webs by Individual Control of Electrical and Thermal Conductivity

机译:可折叠热电材料:通过单独控制电导率和热导率来改善直接纺制CNT网的热电性能

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We suggest the fabrication of foldable thermoelectric (TE) materials by embedding conducting polymers into Au-doped CNT webs. The CNT bundles, which are interconnected by a direct spinning method to form 3D networks without interfacial contact resistance, provide both high electrical conductivity and high carrier mobility. The ZT value of the spun CNT web is significantly enhanced through two simple processes. Decorating the porous CNT webs with Au nanoparticles increases the electrical conductivity, resulting in an optimal ZT of 0.163, which represents a more than 2-fold improvement compared to the ZT of pristine CNT webs (0.079). After decoration, polyaniline (PANI) is integrated into the Au-doped CNT webs both to improve the Seebeck coefficient by an energy-filtering effect and to decrease the thermal conductivity by the phonon-scattering effect. This leads to a ZT of 0.203, which is one of the highest ZT values reported for organic TE materials. Moreover, Au-doped CNT/PANI web is ultralightweight, free-standing, thermally stable, and mechanically robust, which makes it a viable candidate for a hybrid TE conversion device for wearable electronics. When a 20 K temperature gradient is applied to the TE module consisting of seven p-n couples, 1.74 mu W of power is generated.
机译:我们建议通过将导电聚合物嵌入Au掺杂的CNT网中来制造可折叠热电(TE)材料。通过直接纺丝方法互连以形成无界面接触电阻的3D网络的CNT束既提供高电导率,又提供高载流子迁移率。通过两个简单的过程,纺出的CNT纤网的ZT值显着提高。用Au纳米粒子装饰多孔CNT纤维网可提高电导率,导致最佳ZT为0.163,这与原始CNT纤维网的ZT(0.079)相比,提高了2倍以上。装饰后,将聚苯胺(PANI)集成到掺金的CNT纤维网中,既可以通过能量过滤作用提高塞贝克系数,又可以通过声子散射作用降低导热系数。这导致ZT为0.203,这是有机TE材料报道的最高ZT值之一。此外,金掺杂的CNT / PANI纤维网超轻,独立,热稳定且机械坚固,这使其成为用于可穿戴电子设备的混合TE转换设备的可行选择。当对由七个p-n对组成的TE模块施加20 K的温度梯度时,将产生1.74μW的功率。

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