da Câmara Santa Clara Gomes Tristan, Marchal Nicolas, Abreu Araujo Flavio, Piraux Luc
Institute of Condensed Matter and Nanosciences, Université Catholique de Louvain, Place Croix du Sud 1, 1348 Louvain-la-Neuve, Belgium.
Nanomaterials (Basel). 2023 May 25;13(11):1735. doi: 10.3390/nano13111735.
Thermoelectric energy conversion based on flexible materials has great potential for applications in the fields of low-power heat harvesting and solid-state cooling. Here, we show that three-dimensional networks of interconnected ferromagnetic metal nanowires embedded in a polymer film are effective flexible materials as active Peltier coolers. Thermocouples based on Co-Fe nanowires exhibit much higher power factors and thermal conductivities near room temperature than other existing flexible thermoelectric systems, with a power factor for Co-Fe nanowire-based thermocouples of about 4.7 mW/K2m at room temperature. The effective thermal conductance of our device can be strongly and rapidly increased by active Peltier-induced heat flow, especially for small temperature differences. Our investigation represents a significant advance in the fabrication of lightweight flexible thermoelectric devices, and it offers great potential for the dynamic thermal management of hot spots on complex surfaces.
基于柔性材料的热电能量转换在低功率热采集和固态冷却领域具有巨大的应用潜力。在此,我们展示了嵌入聚合物薄膜中的相互连接的铁磁金属纳米线三维网络作为有源珀耳帖冷却器是有效的柔性材料。基于钴铁纳米线的热电偶在室温附近表现出比其他现有柔性热电系统更高的功率因数和热导率,基于钴铁纳米线的热电偶在室温下的功率因数约为4.7 mW/K²m。我们器件的有效热导率可通过有源珀耳帖诱导的热流强烈且快速地增加,特别是对于小温差。我们的研究代表了轻质柔性热电装置制造方面的重大进展,并且为复杂表面上热点的动态热管理提供了巨大潜力。