材料科学
石墨烯
氧化物
塞贝克系数
热电效应
纳米技术
复合材料
离子键合
热电材料
热电发电机
热导率
冶金
物理
热力学
离子
量子力学
作者
Shuai Sun,Xiao‐Lei Shi,Wanyu Lyu,Min Hong,Wenyi Chen,Meng Li,Tianyi Cao,Boxuan Hu,Qingfeng Liu,Zhi‐Gang Chen
标识
DOI:10.1002/adfm.202402823
摘要
Abstract Ionic thermoelectric materials have attracted increasing attention because of their high flexibility and high Seebeck coefficient. However, their insufficient thermoelectric performance and long‐standing processing limit their practical applications. To achieve exotic ionic thermoelectric materials, here, a graphene oxide (GO) modified acrylamide ionogel is designed with high thermoelectric performance and flexibility. Detailed structural characterizations confirm that the uniform dispersion of GO particles in the ionogel structure enables a power factor of 753.0 µW m −1 K −2 and a promising ZT value of 0.19. Additionally, the as‐prepared ionic thermoelectric thin film shows excellent flexibility, stretchability, and self‐adhesiveness. An integrated device, assembled by the as‐prepared ionogel films, can generate an optimal output power density of 1.32 mW cm −2 with a temperature difference of 20 K, indicating great potential for wearable electronics. This work provides insight for searching long‐term, high‐performance ionic thermoelectric materials.
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