High-Performance Ionic Thermoelectric Supercapacitor for Integrated Energy Conversion-Storage

被引:0
|
作者
Xinyu Yang [1 ]
Yuqing Tian [1 ]
Bo Wu [1 ]
Wei Jia [2 ]
Chengyi Hou [1 ]
Qinghong Zhang [3 ]
Yaogang Li [3 ]
Hongzhi Wang [1 ]
机构
[1] 不详
[2] State Key Laboratory for Modification of Chemical Fibers and Polymer Materials,College of Materials Science and Engineering,Donghua University
[3] 不详
[4] State Key Laboratory for Space Power Sources Technology
[5] Engineering Research Center of Advanced Glasses Manufacturing Technology Ministry of Education,Donghua University
[6] 不详
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中图分类号
TM53 [电容器]; TQ427.26 [];
学科分类号
摘要
Converting low-grade waste heat into usable electricity and storing it simultaneously requires a new technology that realize the directional migration of electrons or ions under temperature difference and enrichment on the electrodes. Although the urgent demand of energy conversion-storage(ECS) has emerged in the field of wearable electronic, achieving the integrated bi-functional device remains challenge due to the different mechanisms of electrical transportation and storage. Here, we report an ionic thermoelectric supercapacitor that relies on the synergistic functions of thermoelectricity and supercapacitor in the thermoelectric ionogel electrolyte and high-performance hydrogel electrodes to enhance the ECS performance under a thermal gradient. The thermoelectric electrolyte is composed of polyacrylamide hydrogel and sodium carboxymethyl cellulose(PMSC),possessing cross-linked network with excellent cation selectivity, while the ionic thermoelectric properties are further improved in the presence of NaCl.The corresponding Seebeck coefficient and ionic conductivity of the NaCl–PMSC electrolyte reach 17.1 mV K-1 and 26.8 mS cm-1 , respectively. Owing to good stretchability of both gel-based electrolyte and electrode, the fullstretchable integrated ECS device, termed ionic thermoelectric supercapacitor, presents promising thermal-charge storage capability(~1.3 mC, ΔT ≈ 10 K), thus holds promise for wearable energy harvesting.
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页码:954 / 961
页数:8
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