2023
DOI: 10.1007/s42765-023-00262-y
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Recent Progress of Graphene Fiber/Fabric Supercapacitors: From Building Block Architecture, Fiber Assembly, and Fabric Construction to Wearable Applications

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Cited by 47 publications
(14 citation statements)
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“…The experiments show that for both wrist and finger bending, the GNP‐filled composites show higher output voltage than DE or hybrid‐filled systems. The reason behind such behavior is due to the higher electrical conductivity of GNP than other composites 55 . The mechanism behind this can be briefly stated under the piezoelectric principle.…”
Section: Resultsmentioning
confidence: 99%
“…The experiments show that for both wrist and finger bending, the GNP‐filled composites show higher output voltage than DE or hybrid‐filled systems. The reason behind such behavior is due to the higher electrical conductivity of GNP than other composites 55 . The mechanism behind this can be briefly stated under the piezoelectric principle.…”
Section: Resultsmentioning
confidence: 99%
“…[48] Graphene fiber/fabric is a promising textile composite that is being used widely in energy storage and supercapacitor applications. [49] Graphene can be used in different forms and structures such as 0-D graphene quantum dots (GQD), 1-D graphene nanoribbons (GNR), and 2-D graphene nanosheets. Apart from these, different chemical derivatives of graphene can also be produced, including graphene oxide (GO), reduced graphene oxide (rGO), and chemically functionalized graphene oxide (fGO) (Figure 5).…”
Section: Graphenementioning
confidence: 99%
“…Many works have been done to fabricate graphene composite materials such as graphene fiber (GFs), graphene polymer composites (gPCs), and graphene/fiber/polymer composites (gFPCs) [48] . Graphene fiber/fabric is a promising textile composite that is being used widely in energy storage and supercapacitor applications [49] . Graphene can be used in different forms and structures such as 0‐D graphene quantum dots (GQD), 1‐D graphene nanoribbons (GNR), and 2‐D graphene nanosheets.…”
Section: Nanomaterials Used In High‐performance Textilesmentioning
confidence: 99%
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“…[40] Unfortunately, the self-restacking and poor interlayer channels of Ti 3 C 2 T x cause the sluggish ion insertion/de-insertion. To enhance the electrochemical performance, the structural manipulations [41] (oriented porous network [33] and ordered array interface) [31] and active material modifications (metal oxides/sulfides [42] and conducting polymer) [43] were conducted into Ti 3 C 2 T x fibers, thereby creating the short-range transport pathways and high faradaic energy-storage. As a result, the energy density and capacitance were raised to 40.70 mWh cm À 3 and 1700 F cm À 3 , respectively.…”
Section: Introductionmentioning
confidence: 99%