Xu Yinghong, Li Zhiwei, Wu Langyuan, Dou Hui, Zhang Xiaogang
Jiangsu Key Laboratory of Electrochemical Energy Storage Technologies, College of Material Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing, 211106, People's Republic of China.
Nanomicro Lett. 2024 Jan 4;16(1):72. doi: 10.1007/s40820-023-01292-2.
Lithium-ion thermoelectrochemical cell (LTEC), featuring simultaneous energy conversion and storage, has emerged as promising candidate for low-grade heat harvesting. However, relatively poor thermosensitivity and heat-to-current behavior limit the application of LTECs using LiPF electrolyte. Introducing additives into bulk electrolyte is a reasonable strategy to solve such problem by modifying the solvation structure of electrolyte ions. In this work, we develop a dual-salt electrolyte with fluorosurfactant (FS) additive to achieve high thermopower and durability of LTECs during the conversion of low-grade heat into electricity. The addition of FS induces a unique Li solvation with the aggregated double anions through a crowded electrolyte environment, resulting in an enhanced mobility kinetics of Li as well as boosted thermoelectrochemical performances. By coupling optimized electrolyte with graphite electrode, a high thermopower of 13.8 mV K and a normalized output power density of 3.99 mW m K as well as an outstanding output energy density of 607.96 J m can be obtained. These results demonstrate that the optimization of electrolyte by regulating solvation structure will inject new vitality into the construction of thermoelectrochemical devices with attractive properties.
锂离子热电化学电池(LTEC)具有同时进行能量转换和存储的特点,已成为低品位热能收集的有前途的候选者。然而,相对较差的热敏感性和热到电流的行为限制了使用LiPF电解质的LTEC的应用。在本体电解质中引入添加剂是通过改变电解质离子的溶剂化结构来解决此类问题的合理策略。在这项工作中,我们开发了一种含有氟表面活性剂(FS)添加剂的双盐电解质,以在将低品位热转化为电能的过程中实现LTEC的高热电势和耐久性。FS的添加通过拥挤的电解质环境诱导了与聚集双阴离子的独特Li溶剂化,导致Li的迁移动力学增强以及热电化学性能提高。通过将优化的电解质与石墨电极耦合,可以获得13.8 mV K的高热电势、3.99 mW m² K的归一化输出功率密度以及607.96 J m⁻³的出色输出能量密度。这些结果表明,通过调节溶剂化结构对电解质进行优化将为构建具有吸引人特性的热电化学器件注入新的活力。