电解质
溶剂化
锂(药物)
材料科学
功率密度
离子
化学工程
化学
电极
热力学
物理化学
功率(物理)
有机化学
物理
工程类
内分泌学
医学
作者
Yinghong Xu,Zhiwei Li,Langyuan Wu,Hui Dou,Xiaogang Zhang
标识
DOI:10.1007/s40820-023-01292-2
摘要
Abstract 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 6 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 −1 and a normalized output power density of 3.99 mW m –2 K –2 as well as an outstanding output energy density of 607.96 J m −2 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.
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