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Fabrication of V2O5 with various morphologies for high-performance electrochemical capacitor
Online Contents | 2016| -
Three-dimensional porous V2O5 hierarchical spheres as a battery-type electrode for a hybrid supercapacitor with excellent charge storage performanceElectronic supplementary information (ESI) available: SEM images of the samples obtained at various times (Fig. S1); crystal structure of V2O5 (Fig. S2); CV curves of the as-obtained porous V2O5 hierarchical spheres on various potential limits (Fig. S3); cycling behavior of the as-obtained V2O5 hierarchical spheres obtained by GCD curves at 1 A g−1 after 100 cycles (Fig. S4); electrochemical performance of the as-prepared porous V2O5 hierarchical spheres as an electrode in an (LiNO3 + PVA) electrolyte (Fig. S5); CV curves of active carbon and V2O5 hierarchical spheres (Fig. S6); Ragone plots of AC//V2O5 hierarchical spheres HSC device (Fig. S7); the capacitive retention of the AC//V2O5 hierarchical spheres HSC device at straight and bend states (Fig. S8); a schematic diagram illustrating AC//V2O5 hierarchical spheres HSC device configuration (Scheme S1); comparison of the electrochemical performance of SC devices (Table S1). See DOI: 10.1039/c7dt02986a
Online Contents | 2017| -
VO2(B) conversion to VO2(A) and VO2(M) and their oxidation resistance and optical switching properties
Free accessDOAJ | 2016| -
Synthesis and phase transition properties of VO2 (M) hollow spheres with large thermal hysteresis width
Free accessWiley | 2019| -
Macromolecular multilayer skin-touch super-flexible board
Free accessEuropean Patent Office | 2023|
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