2013
DOI: 10.1016/j.jpowsour.2013.03.048
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In situ assembly of graphene sheets-supported SnS2 nanoplates into 3D macroporous aerogels for high-performance lithium ion batteries

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Cited by 183 publications
(98 citation statements)
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“…Regarding the progression of the previously developed hybrids, improved specifi c capacity values were reported through the exploitation of 3D graphene matrixes incorporating, for example, SnO 2 , [252][253][254] Fe 3 O 4 , [ 255,256 ] MoS 2 , [ 257,258 ] SnS 2 , [ 259 ] MnO, [ 260 ] TiO 2 [ 261 ] or Si [ 262 ] particles. Indeed, the graphene network appeared to be benefi cial for reducing the material resistance and to improve the mechanical stability of the electrode.…”
mentioning
confidence: 99%
“…Regarding the progression of the previously developed hybrids, improved specifi c capacity values were reported through the exploitation of 3D graphene matrixes incorporating, for example, SnO 2 , [252][253][254] Fe 3 O 4 , [ 255,256 ] MoS 2 , [ 257,258 ] SnS 2 , [ 259 ] MnO, [ 260 ] TiO 2 [ 261 ] or Si [ 262 ] particles. Indeed, the graphene network appeared to be benefi cial for reducing the material resistance and to improve the mechanical stability of the electrode.…”
mentioning
confidence: 99%
“…Thus the capacity would become more stable when the side reactions come to a certain to reach an equilibrium. The good electrochemical performances at high current densities of these SnS 2 @C hollow microsphere show their superiority over those previously reported SnS 2 , such as graphene sheets-supported SnS 2 nanoplates in a study by Jiang et al [37]. Therein the discharge capacity of the LIBs decayed from 642 to 240 mA g −1 when the current densities changed from 50 to 1000 mA g −1 .…”
Section: Electrochemical Performancementioning
confidence: 47%
“…Besides MoS 2 , first time 3D mesoporous MoSe 2 /rGO foam was synthesized by hydrothermal method, which was used as anode in LIB [78]. Additionally, L-TMD NSs such as the SnS 2 and WS 2 have also been combined with the 3D porous structure to improve their electrochemical performance [80][81][82][83][84]. Recently, a facile two-step route to synthesize 3D interconnected graphene frameworks embedded with homogeneously distributed SnS 2 nanoplates (SSG) by using GO NSs, SnCl 4 .5H 2 O and L-cys as source materials has reported.…”
Section: D Porous Structures With 2d Graphene/porous Cnfmentioning
confidence: 99%