Gao Qi, Wang Wu, Lu Yao, Cai Kefeng, Li Yating, Wang Zixing, Wu Miaomiao, Huang Changjun, He Jiaqing
Shanghai Key Laboratory of Development and Application for Metal-Functional Materials, Key Laboratory of Advanced Civil Engineering Materials, Ministry of Education, School of Materials Science & Engineering, Tongji University, 4800 Caoan Road, Shanghai 201804, China.
SUSTech Core Research Facilities and Department of Physics, Southern University of Science and Technology, Shenzhen 518055, China.
ACS Appl Mater Interfaces. 2021 Mar 31;13(12):14327-14333. doi: 10.1021/acsami.1c02194. Epub 2021 Mar 19.
Herein, we fabricated an Ag/AgSe composite film on a flexible nylon membrane with a high power factor and excellent flexibility. First, Ag nanoparticles and multiscale AgSe nanostructure composite powders were prepared by wet chemical synthesis using Se nanowires, silver nitrate, and l-ascorbic acid as raw materials, followed by vacuum-assisted filtration of the composite powders on a porous nylon membrane and then hot pressing. The optimized composite film shows a very high power factor of 1860.6 μW m K (with a corresponding electrical conductivity of 3958 S cm) at room temperature. The composite film retains 93.3% of the original electrical conductivity after 1000 bending cycles around a rod with a diameter of 8 mm. At a temperature difference of 27 K, an 8-leg thermoelectric prototype device assembled with the optimized composite film generates a maximum power of 7.14 μW with a corresponding power density of 8.74 W m. This work provides a new strategy to synthesize flexible thermoelectric films with both a high power factor and high electrical conductivity.
在此,我们在柔性尼龙膜上制备了具有高功率因数和优异柔韧性的Ag/AgSe复合薄膜。首先,以硒纳米线、硝酸银和L-抗坏血酸为原料,通过湿化学合成法制备了银纳米颗粒和多尺度AgSe纳米结构复合粉末,然后将复合粉末真空辅助过滤到多孔尼龙膜上,再进行热压。优化后的复合薄膜在室温下显示出非常高的功率因数,为1860.6 μW m K(相应的电导率为3958 S cm)。复合薄膜在围绕直径为8 mm的棒进行1000次弯曲循环后,保留了原始电导率的93.3%。在27 K的温差下,用优化后的复合薄膜组装的八腿热电原型器件产生的最大功率为7.14 μW,相应的功率密度为8.74 W m。这项工作为合成兼具高功率因数和高电导率的柔性热电薄膜提供了一种新策略。