2014
DOI: 10.1007/s10853-013-7986-1
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The synthesis of graphene oxide nanostructures for supercapacitors: a simple route

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Cited by 24 publications
(8 citation statements)
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“…Graphene oxide (GO) is a two-dimensional single layer material bearing sp 2 -bonded carbon [1,2]. Its exceptional physical properties together with its flexibility in chemical functionalization owing to the large numbers of covalent oxygen-containing functional groups-carboxyl, hydroxyl and epoxide present in GO [3], makes GO the candidate of choice for a wide range of applications, including super-capacitors [1,4,5], energy production [5], electronics [6,7], and biological and medical areas [8].…”
Section: Introductionmentioning
confidence: 99%
See 1 more Smart Citation
“…Graphene oxide (GO) is a two-dimensional single layer material bearing sp 2 -bonded carbon [1,2]. Its exceptional physical properties together with its flexibility in chemical functionalization owing to the large numbers of covalent oxygen-containing functional groups-carboxyl, hydroxyl and epoxide present in GO [3], makes GO the candidate of choice for a wide range of applications, including super-capacitors [1,4,5], energy production [5], electronics [6,7], and biological and medical areas [8].…”
Section: Introductionmentioning
confidence: 99%
“…Its exceptional physical properties together with its flexibility in chemical functionalization owing to the large numbers of covalent oxygen-containing functional groups-carboxyl, hydroxyl and epoxide present in GO [3], makes GO the candidate of choice for a wide range of applications, including super-capacitors [1,4,5], energy production [5], electronics [6,7], and biological and medical areas [8]. Nowadays the production of GO in large industrial scale has been enabled which not only significantly lowered the cost of such materials but also showed its great potentials in the areas where large quantity of these materials are required [9].…”
Section: Introductionmentioning
confidence: 99%
“…They also reported that disordered G nanosheets with many edges in the electrode store more energy with increase in scan rate. Also, 3D GO, G functionalised with oxygen moieties, achieved a C s of 352 F g À1 at a sweep rate of 5 mV s À1 [117]. A composite of G/CeO 2 /carbon black in electrodes with a narrow deep morphology was reported to increase charge storage but reduced current response [95].…”
Section: Graphenementioning
confidence: 98%
“…То чини да композити имају добру електронску проводљивост и олакшан приступ јона активној површини [64]. Показано је да неке од електрода израђених од графен-оксида (тродимензионалне порозне електроде) могу достићи специфичну капацитивности од 350 F g -1 при 5 mV s -1 [65].…”
Section: 1 угљенични материјалиunclassified