2022
DOI: 10.1002/aenm.202201481
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Polypyrrole‐Assisted Nitrogen Doping Strategy to Boost Vanadium Dioxide Performance for Wearable Nonpolarity Supercapacitor and Aqueous Zinc‐Ion Battery

Abstract: woven into the fabrics to solve the above challenges. [7][8][9] Recently, developed carbonbased fibers due to the merits of featuring light weight, superior conductivity, and omnidirectional flexibility are suitable as current collectors for realization of flexible energy-storage devices. [10][11][12][13][14][15] Therefore, the vast majority of spotlights mainly focused on exploring such fiber-shaped aqueous energy-storage devices including supercapacitors and aqueous ion batteries at present. [16][17][18][19]… Show more

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Cited by 54 publications
(43 citation statements)
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References 68 publications
(75 reference statements)
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“…N-VO 2 nanosheets (NVNSs)@NC nanowires (NWs) heterostructure nanocomposites were prepared on CNTF using a three-step process that included electrochemical polymerization, a solvothermal procedure, and post-annealing established by Zhang group (Figure 2j). [57] With the fast ion transport and superb electronic conductivity of the binder-free cathode, the fabricated NVNSs@ NC@CNTF cathode delivered impressive electrochemical performance and extraordinary mechanical flexibility in FQAZIBs. Even though the direct growth of electrode active substances on soft current collectors possesses the advantage of without polymer binder, the successful acquires of this type of cathode are seriously limited by the varieties of electrode active substances and preparation approach.…”
Section: Flexible Cathodementioning
confidence: 99%
“…N-VO 2 nanosheets (NVNSs)@NC nanowires (NWs) heterostructure nanocomposites were prepared on CNTF using a three-step process that included electrochemical polymerization, a solvothermal procedure, and post-annealing established by Zhang group (Figure 2j). [57] With the fast ion transport and superb electronic conductivity of the binder-free cathode, the fabricated NVNSs@ NC@CNTF cathode delivered impressive electrochemical performance and extraordinary mechanical flexibility in FQAZIBs. Even though the direct growth of electrode active substances on soft current collectors possesses the advantage of without polymer binder, the successful acquires of this type of cathode are seriously limited by the varieties of electrode active substances and preparation approach.…”
Section: Flexible Cathodementioning
confidence: 99%
“…Signals at 283 and 407 cm À1 represent the V-O bending modes, the signal at 526 cm À1 refers to the V 3 -O bending modes, the signal at 695 cm À1 represents the V-O-V stretching modes, and the last signal at 995 cm À1 refers to the shortest O-V stretching vibration modes. 33 The oxidation states of the sample are further confirmed by X-ray photoelectron spectra (XPS). For the V 2p curve (Fig.…”
mentioning
confidence: 91%
“…[10] Based on the energy-storage mechanism (electro-sorption ions of electrical double-layer capacitors [11] and the redox reactions of pseudocapacitors), [12] the micro-building blocks of fibers with large ion accessible surface, porous pathways, electroactivity and electrical conductivity are highly important. [13] In this regard, diverse nanocarbon-based (e.g., carbon nanotubes (CNT), [14] graphene [15] and activated carbon) [16] fibers, conductive material-coated yarn, [17] and pseudocapacitive active material-loaded metal wire [18] are constructed through dry spinning, [19] wet spinning, [20] hydrothermal self-assembly, [21] microfluidic spinning, [22] chemical/electrochemical deposition [23] and 3D printing [24] processes. For instance, the hierarchical-structured CNT-graphene [25] fibers presented good capacitance of 305 F cm À 3 due to enhanced ionic accessibility and filling density.…”
Section: Introductionmentioning
confidence: 99%