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High-performance hybrid carbon nanotube fibers for wearable energy storage

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posted on 2024-11-16, 05:52 authored by Zan Lu, Yunfeng Chao, Yu Ge, Javad ForoughiJavad Foroughi, Yong Zhao, Caiyun WangCaiyun Wang, Hairu Long, Gordon WallaceGordon Wallace
Wearable energy storage devices are of practical interest, but few have been commercially exploited. Production of electrodes with extended cycle life, as well as high energy and power densities, coupled with flexibility, remains a challenge. Herein, we have demonstrated the development of a high-performance hybrid carbon nanotube (CNT) fiber-based supercapacitor for the first time using conventional wet-spinning processes. Manganese dioxide (MnO2) nanoflakes were deposited onto the as-prepared CNT fibers by electrodeposition to form highly flexible nanocomposites fibers. As-prepared fibers were characterized by electron microscopy, electrical, mechanical, and electrochemical measurements. It was found that the specific capacitance was over 152 F g-1 (156 F cm-3), which is about 500% higher than the multi-walled carbon nanotube/MnO2 yarn-based supercapacitors. The measured energy density was 14.1 Wh kg-1 at a power density of 202 W kg-1. These values are 232% and 32% higher than the energy density and power density of MWNT/MnO2 yarn-based supercapacitor, respectively. It was found that the cyclic retention ability was more stable, revealing a 16% increase after 10000 cycles. Such substantial enhancements of key properties of the hybrid material can be associated with the synergy of CNT and MnO2 nanoparticles in the fiber structure. The use of wet-spun hybrid CNT for fiber-based supercapacitors has been demonstrated.

Funding

Development of hybrid carbon nanotube yarn and processing methods to create 3D smart materials and devices

Australian Research Council

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ARC Centre of Excellence for Electromaterials Science

Australian Research Council

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History

Citation

Lu, Z., Chao, Y., Ge, Y., Foroughi, J., Zhao, Y., Wang, C., Long, H. & Wallace, G. G. (2017). High-performance hybrid carbon nanotube fibers for wearable energy storage. Nanoscale, 9 (16), 5063-5071.

Journal title

Nanoscale

Volume

9

Issue

16

Pagination

5063-5071

Language

English

RIS ID

113907

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