2009
DOI: 10.1016/j.elecom.2009.04.036
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Electrochemical performance of graphene nanosheets as anode material for lithium-ion batteries

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Cited by 633 publications
(334 citation statements)
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“…[32][33][34][35][36] In these papers, the rather poor reversibility and the limited number of cycles verifi ed the drawbacks initially observed by I. Honma. [ 28 ] Specifi cally, Z. Jiao et al [ 34 ] correlated the sensitivity of RGO's Li + storage properties to the method of GO reduction employed (i.e., thermal reduction in N 2 at different temperatures, chemical reduction with hydrazine and electron beam irradiation, see Table 1 ).…”
Section: Graphene As Li-ion Hostmentioning
confidence: 55%
“…[32][33][34][35][36] In these papers, the rather poor reversibility and the limited number of cycles verifi ed the drawbacks initially observed by I. Honma. [ 28 ] Specifi cally, Z. Jiao et al [ 34 ] correlated the sensitivity of RGO's Li + storage properties to the method of GO reduction employed (i.e., thermal reduction in N 2 at different temperatures, chemical reduction with hydrazine and electron beam irradiation, see Table 1 ).…”
Section: Graphene As Li-ion Hostmentioning
confidence: 55%
“…Disordered graphene nanosheets (stacks of 2D graphene), have also displayed high reversible capacities (up to ~1000 mA h g -1 ) as a result of increasing defect densities [151,154]. The additional Li + storage sites therefore contribute to a more than two-fold increase in total gravimetric capacity, compared to 3D graphite.…”
Section: Carbonmentioning
confidence: 99%
“…100 mL of de-ionized (DI) water was slowly added to this mixture and stirred for 15 min after which 8 mL of H 2 O 2 (30%) was added. The solution was filtered and washed with 150 mL of HCl (10%) and 100 mL of DI water [29]. The resulting solution was subjected to centrifugation (4000 r/min, 5 min) to retrieve the graphite oxide.…”
Section: Methodsmentioning
confidence: 99%