Photo-electronic Hybrids Research Center, Korea Institute of Science and Technology (KIST) , Seoul 02792, Republic of Korea.
Carbon Nanomaterials Design Laboratory, Global Research Laboratory, Research Institute of Advanced Materials, Department of Materials Science and Engineering, Seoul National University , Seoul 08826, Republic of Korea.
ACS Nano. 2017 Aug 22;11(8):7608-7614. doi: 10.1021/acsnano.7b01771. Epub 2017 Jul 18.
As practical interest in flexible/or wearable power-conversion devices increases, the demand for high-performance alternatives to thermoelectric (TE) generators based on brittle inorganic materials is growing. Herein, we propose a flexible and ultralight TE generator (TEG) based on carbon nanotube yarn (CNTY) with excellent TE performance. The as-prepared CNTY shows a superior electrical conductivity of 3147 S/cm due to increased longitudinal carrier mobility derived from a highly aligned structure. Our TEG is innovative in that the CNTY acts as multifunctions in the same device. The CNTY is alternatively doped into n- and p-types using polyethylenimine and FeCl, respectively. The highly conductive CNTY between the doped regions is used as electrodes to minimize the circuit resistance, thereby forming an all-carbon TEG without additional metal deposition. A flexible TEG based on 60 pairs of n- and p-doped CNTY shows the maximum power density of 10.85 and 697 μW/g at temperature differences of 5 and 40 K, respectively, which are the highest values among reported TEGs based on flexible materials. We believe that the strategy proposed here to improve the power density of flexible TEG by introducing highly aligned CNTY and designing a device without metal electrodes shows great potential for the flexible/or wearable power-conversion devices.
随着人们对灵活/可穿戴式能量转换器件的实际兴趣日益增加,对基于易碎无机材料的热电(TE)发电机的高性能替代品的需求也在增长。在此,我们提出了一种基于碳纳米管纱(CNTY)的灵活且超轻量的 TE 发电机(TEG),其具有优异的 TE 性能。所制备的 CNTY 由于高度取向结构导致纵向载流子迁移率增加,表现出优异的电导率 3147 S/cm。我们的 TEG 的创新性在于 CNTY 在同一器件中具有多种功能。通过分别使用聚乙烯亚胺和 FeCl,将 CNTY 掺杂为 n 型和 p 型。掺杂区域之间的高导电性 CNTY 用作电极,以最小化电路电阻,从而形成无需额外金属沉积的全碳 TEG。基于 60 对 n 型和 p 型掺杂 CNTY 的柔性 TEG 在温差为 5 和 40 K 时的最大功率密度分别为 10.85 和 697 μW/g,这是基于柔性材料的报告 TEG 中的最高值。我们相信,通过引入高度取向的 CNTY 并设计无金属电极的器件来提高柔性 TEG 的功率密度的策略,对于灵活/可穿戴式能量转换器件具有巨大的潜力。