Norimasa Oga, Tamai Ryota, Nakayama Hiroto, Shinozaki Yoshiyuki, Takashiri Masayuki
Department of Materials Science, Tokai University, Hiratsuka, Kanagawa, 259-1292, Japan.
Sci Rep. 2025 May 7;15(1):15956. doi: 10.1038/s41598-025-00527-z.
Single-walled carbon nanotubes (SWCNTs) have attracted attention for use in thermoelectric generators (TEGs) that convert thermal energy into electricity. SWCNTs, which are lightweight, flexible, and nontoxic materials, are perfectly suited for TEGs as self-contained power sources for Internet of Things (IoT) sensors. However, the generation of electricity by TEGs requires not only a heat source to create a temperature gradient within the TEGs but also a cold source. In this study, we prepared SWCNT-TEGs consisting of p-i-n junction SWCNT films on a polyimide sheet that automatically generated a temperature gradient within the SWCNT-TEGs by uniform heating without a cold source. The output voltage and current of the SWCNT-TEG increased with increasing temperature. At a heating temperature of 370 K, the SWCNT-TEG exhibited an output voltage of 2.3 mV, a short-circuit current of 13.7 µA, and a maximum output power of 7.7 nW. The self-generated temperature gradient under uniform heating was attributed to the higher optical absorption of the SWCNT film than that of the polyimide sheet, which increased the temperature of the SWCNT film. The results of this study indicate that a simple attachment of SWCNT-TEGs to a heat source can sustainably power an IoT sensor as self-contained power sources.
单壁碳纳米管(SWCNTs)因其在将热能转化为电能的热电发电机(TEGs)中的应用而受到关注。SWCNTs是轻质、灵活且无毒的材料,作为物联网(IoT)传感器的独立电源,非常适合用于TEGs。然而,TEGs发电不仅需要热源在TEGs内部产生温度梯度,还需要冷源。在本研究中,我们制备了由聚酰亚胺片上的p-i-n结SWCNT薄膜组成的SWCNT-TEGs,其在无冷源的情况下通过均匀加热在SWCNT-TEGs内部自动产生温度梯度。SWCNT-TEG的输出电压和电流随温度升高而增加。在370 K的加热温度下,SWCNT-TEG的输出电压为2.3 mV,短路电流为13.7 µA,最大输出功率为7.7 nW。均匀加热下的自生温度梯度归因于SWCNT薄膜比聚酰亚胺片具有更高的光吸收,这提高了SWCNT薄膜的温度。本研究结果表明,将SWCNT-TEGs简单地附着到热源上就可以作为独立电源为物联网传感器持续供电。