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Journal of Colloid and Interface Science

Journal of Colloid and Interface Science

IF: 9.4
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Systematic design of MXene/thermoplastic polyurethane/carbon nanotube@ polypyrrole fiber electrodes for efficient flexible fiber supercapacitors

Published:5 December 2024 DOI: 10.1016/j.jcis.2024.12.027 PMID: 39647400
Mengdan Yang,?Yan Zhang,?Meng Li,?Weixue Meng,?Ding Zhang,?Jie Xu,?Yingjiu Zhang,?Fengmei Guo,?Yuanyuan Shang,?Anyuan Cao

Abstract

MXene exhibits exceptional electrical and electrochemical properties, and is regarded as a promising candidate for future wearable electronic products. However, achieving a balance between flexibility and capacitance performance in MXene-based fiber supercapacitors remains a challenge. Here, MXene/Thermoplastic polyurethane (TPU) composite fibers with good conductivity and tensile properties, were prepared by wet spinning method. A carbon nanotube (CNT) film with continuous network structure was introduced on the surface of MXene/TPU composite fiber as a conductive interfacial layer to deposit a uniform and dense polypyrrole (PPy) array controllably. This structure is beneficial for improving the utilization of PPy and can enhance the overall strength and flexibility of composite fibers. The MXene/TPU/CNT@PPy composite fiber electrode demonstrates promising electrochemical performance, with a specific capacitance of 579F/cm3 (at a current density of 1 A/cm3). The assembled flexible fiber supercapacitor exhibits a power density of 499.8?mW/cm3 and a corresponding energy density of 16.3 mWh/cm3 (1 A/cm3), suggesting potential applications in flexible and wearable energy storage devices and textiles.

Substances (4)

Materials
Procduct Name CAS Molecular Formula Supplier Price
Dimethyl sulfoxide 67-68-5 C2H6OS 1922 suppliers $5.00-$120900.00
Acetic acid 64-19-7 C2H4O2 1773 suppliers $10.00-$9280.00
Chitosan 9012-76-4 C6H11NO4X2 1020 suppliers $13.00-$4250.00
Poly(vinyl alcohol) 9002-89-5 C2H4O 773 suppliers $13.00-$4353.77

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