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- W4307154460 endingPage "105901" @default.
- W4307154460 startingPage "105901" @default.
- W4307154460 abstract "The supercapacitor is focused as a highly sustainable and capacity energy storage device to meet the demand of energy in day-to-day life. Here, a band-gap tuned highly stable h-BN/rGO wrapped CdS/PPy is presented as a supercapacitor electrode material to obtain excellent specific capacitance, high power density and long cycling stability. It was synthesized via hydrothermal method combined with chemical oxidative polymerisation mechanism. The liquid exfoliated h-BN and graphene layers are restacked randomly by properly sandwiching alternate layers to form band gap tuned h-BN/rGO hetero-structure contributing as a conducting framework due to formation of Van der Waals stacked superlattice. The h-BN/rGO-CdS core-shell structure prevents the swelling and shrinking of CdS which improved the electrochemical performance and stability of the supercapacitor electrode. The highly conducting PPy nanowires acts as a backbone for the fast conduction of ions and the porous structure exhibiting superior specific capacitance of 1435F/g at a current density of 1A/g. The asymmetric supercapacitor (ASC) fabricated using h-BN/rGO/[email protected]//AC showed a specific capacitance of 102F/g at 1A/g and maximum energy density of 32 Wh/kg at a power density of 750 W/kg. Furthermore, the device showed a capacitance retention of 88.50 % after 5000 cycles assures it as a promising material for supercapacitor application." @default.
- W4307154460 created "2022-10-28" @default.
- W4307154460 creator A5018316969 @default.
- W4307154460 creator A5032129143 @default.
- W4307154460 creator A5032348918 @default.
- W4307154460 date "2022-12-01" @default.
- W4307154460 modified "2023-10-14" @default.
- W4307154460 title "Band-gap tuned hexagonal-boron nitride/reduced graphene oxide superlattice wrapped cadmium sulfide/Polypyrrole nanocomposite as an efficient supercapacitor electrode material" @default.
- W4307154460 cites W1751498262 @default.
- W4307154460 cites W1774590578 @default.
- W4307154460 cites W1976311985 @default.
- W4307154460 cites W1978354599 @default.
- W4307154460 cites W1985502096 @default.
- W4307154460 cites W1996247385 @default.
- W4307154460 cites W2029012251 @default.
- W4307154460 cites W2034372707 @default.
- W4307154460 cites W2038273564 @default.
- W4307154460 cites W2042454875 @default.
- W4307154460 cites W2063737458 @default.
- W4307154460 cites W2069137192 @default.
- W4307154460 cites W2072221350 @default.
- W4307154460 cites W2078072074 @default.
- W4307154460 cites W2078489247 @default.
- W4307154460 cites W2085689131 @default.
- W4307154460 cites W2093667136 @default.
- W4307154460 cites W2097949286 @default.
- W4307154460 cites W2107243762 @default.
- W4307154460 cites W2118225223 @default.
- W4307154460 cites W2137193542 @default.
- W4307154460 cites W2139593387 @default.
- W4307154460 cites W2142845500 @default.
- W4307154460 cites W2170703164 @default.
- W4307154460 cites W2175128838 @default.
- W4307154460 cites W2181243807 @default.
- W4307154460 cites W2289474797 @default.
- W4307154460 cites W2320475621 @default.
- W4307154460 cites W2333611667 @default.
- W4307154460 cites W2335037782 @default.
- W4307154460 cites W2412843818 @default.
- W4307154460 cites W2511032604 @default.
- W4307154460 cites W2518890887 @default.
- W4307154460 cites W2568195321 @default.
- W4307154460 cites W2569703905 @default.
- W4307154460 cites W2597988634 @default.
- W4307154460 cites W2600719628 @default.
- W4307154460 cites W2605831958 @default.
- W4307154460 cites W2614825339 @default.
- W4307154460 cites W2746995922 @default.
- W4307154460 cites W2761284446 @default.
- W4307154460 cites W2767507984 @default.
- W4307154460 cites W2771838471 @default.
- W4307154460 cites W2791592344 @default.
- W4307154460 cites W2793026623 @default.
- W4307154460 cites W2807391166 @default.
- W4307154460 cites W2807681982 @default.
- W4307154460 cites W2897944080 @default.
- W4307154460 cites W2913805807 @default.
- W4307154460 cites W2914563784 @default.
- W4307154460 cites W2914732743 @default.
- W4307154460 cites W2918011350 @default.
- W4307154460 cites W2928971395 @default.
- W4307154460 cites W2938915473 @default.
- W4307154460 cites W2970022829 @default.
- W4307154460 cites W2973180144 @default.
- W4307154460 cites W2977286384 @default.
- W4307154460 cites W2977684654 @default.
- W4307154460 cites W3004804143 @default.
- W4307154460 cites W3007809448 @default.
- W4307154460 cites W3024302509 @default.
- W4307154460 cites W3037088074 @default.
- W4307154460 cites W3045232000 @default.
- W4307154460 cites W3084794525 @default.
- W4307154460 cites W3087585591 @default.
- W4307154460 cites W3096451532 @default.
- W4307154460 cites W3111469974 @default.
- W4307154460 cites W3115996812 @default.
- W4307154460 cites W3129753063 @default.
- W4307154460 cites W3152881067 @default.
- W4307154460 cites W3155540638 @default.
- W4307154460 cites W3187264690 @default.
- W4307154460 cites W3189955754 @default.
- W4307154460 cites W3199021688 @default.
- W4307154460 cites W3201477962 @default.
- W4307154460 cites W3203259850 @default.
- W4307154460 cites W3213522625 @default.
- W4307154460 cites W4200257762 @default.
- W4307154460 cites W4221104779 @default.
- W4307154460 cites W4225130345 @default.
- W4307154460 cites W426790492 @default.
- W4307154460 cites W4283772855 @default.
- W4307154460 cites W4285239788 @default.
- W4307154460 cites W4286681117 @default.
- W4307154460 cites W4289844657 @default.
- W4307154460 doi "https://doi.org/10.1016/j.est.2022.105901" @default.
- W4307154460 hasPublicationYear "2022" @default.
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