Lee Taemin, Lee Jae Won, Park Kyung Tae, Kim Jin-Sang, Park Chong Rae, Kim Heesuk
Soft Hybrid Materials 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. 2021 Aug 24;15(8):13118-13128. doi: 10.1021/acsnano.1c02508. Epub 2021 Jul 19.
As power-conversion devices, flexible thermoelectrics that enable conformal contact with heat sources of arbitrary shape are attractive. However, the low performance of flexible thermoelectric materials, which does not exceed those of brittle inorganic counterparts, hampers their practical applications. Herein, we propose inorganic chalcogenide-nanostructured carbon nanotube (CNT) yarns with outstanding power factor at a low temperature using electrochemical deposition. The inorganic chalcogenide-nanostructured CNT yarns exhibit the power factors of 3425 and 2730 μW/(m·K) at 298 K for the - and -type, respectively, which is higher than those of previously reported flexible TE materials. On the basis of excellent performance and geometry advantage of the nanostructured CNT yarn for modular design, all-CNT based thermoelectric generators have been easily fabricated, showing the maximum power densities of 24 and 380 mW/m at Δ = 5 and 20 K, respectively. These results provide a promising strategy for the realization of high-performance flexible thermoelectric materials and devices for flexible/or wearable self-powering systems.
作为功率转换装置,能够与任意形状的热源进行共形接触的柔性热电材料颇具吸引力。然而,柔性热电材料的性能较低,并未超过脆性无机同类材料,这阻碍了它们的实际应用。在此,我们利用电化学沉积法提出了在低温下具有出色功率因数的无机硫族化物纳米结构碳纳米管(CNT)纱线。无机硫族化物纳米结构的CNT纱线在298 K时,n型和p型的功率因数分别为3425和2730 μW/(m·K),高于先前报道的柔性热电材料。基于纳米结构CNT纱线在模块化设计方面的优异性能和几何优势,全碳纳米管热电发电机已轻松制备出来,在ΔT = 5 K和20 K时,最大功率密度分别为24和380 mW/m²。这些结果为实现用于柔性/可穿戴自供电系统的高性能柔性热电材料和器件提供了一种有前景的策略。