2019
DOI: 10.1016/j.carbon.2019.02.081
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Fabrication of a coaxial high performance fiber lithium-ion battery supported by a cotton yarn electrolyte reservoir

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Cited by 30 publications
(21 citation statements)
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“…Conductive materials were usually adopted as inner core to ensure high performance‐to‐weight ratio and specific power and energy density of the coaxial fibrous battery, where the core acted as the supporting substrate for the coating of subsequent components and the current collector for the inner electrode. Some examples of materials for the core fiber are metal (such as lithium), [ 203 ] CPs, [ 204 ] MWCNT, [ 205 ] and metal‐coated or doped carbon nanofiber. [ 206 ] One main concern with coaxial configuration is its limited coating thickness as an effort to control the overall diameter of the fibrous battery to be identical with the typical yarns/threads.…”
Section: Fiber‐shaped Energy Storage Devicesmentioning
confidence: 99%
“…Conductive materials were usually adopted as inner core to ensure high performance‐to‐weight ratio and specific power and energy density of the coaxial fibrous battery, where the core acted as the supporting substrate for the coating of subsequent components and the current collector for the inner electrode. Some examples of materials for the core fiber are metal (such as lithium), [ 203 ] CPs, [ 204 ] MWCNT, [ 205 ] and metal‐coated or doped carbon nanofiber. [ 206 ] One main concern with coaxial configuration is its limited coating thickness as an effort to control the overall diameter of the fibrous battery to be identical with the typical yarns/threads.…”
Section: Fiber‐shaped Energy Storage Devicesmentioning
confidence: 99%
“…Owing to the full combination of CNTs and graphene, the resulting electrode for LIBs displayed high capacity of 390 mAh g −1 . Song et al developed a coaxial fiber‐type LIBs wrapped with CNTs films, cotton core yarn, and a nanoweb separator. Compared with cable‐type battery, using CNTs films as a current collector, the battery was more light and smaller.…”
Section: Preparation Of Carbon‐based Nanomaterialsmentioning
confidence: 99%
“…E) Photographs of several N‐CNT films on a tip of asparagus fern and a freestanding N‐CNT film. Reproduced with permission . Copyright 2016, Wiley‐VCH.…”
Section: Preparation Of Carbon‐based Nanomaterialsmentioning
confidence: 99%
“…In recent years, flexible batteries with multilayer coaxial structure have been widely concerned. [ 122–126 ] Yadav [ 127 ] and colleagues designed and developed a tiny coaxial flexible yarn cell that was deposited on CFS surfaces using electrophoresis and dip‐coating methods. At the current density of 13 μA cm 2 , the stable potential window of the microfiber cell was 2.5 V, and the area discharge capacity was ≈4.2 μAh cm −2 .…”
Section: Configurationmentioning
confidence: 99%