4.8 Article

One-step preparation of gel-electrolyte-friendly fiber-shaped aerogel current collector for solid-state fiber-shaped supercapacitors with large capacity

Journal

JOURNAL OF POWER SOURCES
Volume 521, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jpowsour.2021.230971

Keywords

Electrospinning; Aerogel; Fiber supercapacitor; High length-specific capacitance

Funding

  1. National Natural Science Foundation of China [51373093, 51272151, 51672167]
  2. Natural Science Foundation of Shaanxi Province [2014JZ002, 2015JQ2041]
  3. Fundamental Research Funds for the Central Universities [GK201701011, 2016CBZ004]
  4. Science and Technology program of Xi'an [2017071CG/RC034(SXSF004)]

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This study reports the preparation of a template for fiber-shaped supercapacitors by producing a conductive and hydrophilic aerogel on a metal wire. The aerogel allows easy infiltration of active mass and gel electrolytes, resulting in high capacitance and fast rate response.
Fiber-shaped aerogel conductive structures are a promising template for preparing fiber-shaped supercapacitors with high length-specific capacitance used in flexible and wearable electronics. The challenge lies in how to easily infiltrate enough active mass and gel electrolyte into micropores and achieve intimate contact so that the active mass can be fully utilized for large capacitance and small contact resistance to be obtained for fast rate response. Here, one-step preparation of gel electrolyte friendly, fiber-shaped conductive and hydrophilic aerogel is reported, which was produced from electrospinning poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PP) and poly(ethylene oxide) (PEO) on a centering Ti metal wire. Thanks to the high conductivity of PP, high hydrophilicity of PEO, high porosity of the aerogel structure and high mass loading of PP, the as-prepared PPPEO/Ti showed a fiber-length-specific capacitance of 68.4 mF cm(-1) and excellent rate performance due to well infiltration of gel electrolytes. More interestingly, PP-PEO/Ti was used as a template to load polyaniline (PANI). The as-prepared PANI@PP-PEO/Ti fibers were studied as electrodes in solid-state supercapacitors. A fiber-length-specific capacitance is as large as 136.7 mF cm(-1) was measured. These results suggest our PP-PEO/Ti is a promising 3D fiber-shaped aerogel structure for high-performance fiber energy storage devices.

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