2018
DOI: 10.1016/j.jallcom.2018.04.141
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High-performance SnSb@rGO@CMF composites as anode material for sodium-ion batteries through high-speed centrifugal spinning

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Cited by 34 publications
(17 citation statements)
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“…[21][22][23][24] Till now, a variety of fibers have been successfully fabricated by centrifugal spinning, including polymer based fibers, 25,26 inorganic metal oxide fiber, 27,28 and composite fibers. 29,30 These fibers involved in the applications of tissue engineering, energy conversion/storage, and filtration. 31 Our group focuses on the development of centrifugally spun ultrafine fibers from bio-based polymers, including the regenerated silk fibroin nanofiber, 32 highly porous ethyl cellulose fibers, 33 and alginate-riched nanofibers.…”
Section: Introductionmentioning
confidence: 99%
See 1 more Smart Citation
“…[21][22][23][24] Till now, a variety of fibers have been successfully fabricated by centrifugal spinning, including polymer based fibers, 25,26 inorganic metal oxide fiber, 27,28 and composite fibers. 29,30 These fibers involved in the applications of tissue engineering, energy conversion/storage, and filtration. 31 Our group focuses on the development of centrifugally spun ultrafine fibers from bio-based polymers, including the regenerated silk fibroin nanofiber, 32 highly porous ethyl cellulose fibers, 33 and alginate-riched nanofibers.…”
Section: Introductionmentioning
confidence: 99%
“…Centrifugal spinning, which originated from cotton candy machine, received a great attention over the past few years due to the capability for nanofiber production with advantages of no polar requirement for spinning solution/melt, high productivity of fibers, controllable fluffy degree of fibrous membranes and orientation of fibers 21–24 . Till now, a variety of fibers have been successfully fabricated by centrifugal spinning, including polymer based fibers, 25,26 inorganic metal oxide fiber, 27,28 and composite fibers 29,30 . These fibers involved in the applications of tissue engineering, energy conversion/storage, and filtration 31 .…”
Section: Introductionmentioning
confidence: 99%
“…In this format, the composite of C/Sn/reduced graphene oxide (RGO) possesses a higher initial reversible capacity of 476.2 mAh g −1 with a CE of 70.3% reported by Dong et al Various methods have been proposed to make Sn nanoparticles with Sb element over graphene sheets to explore the efficient way to buffer the mechanical stress, improve the conductivity, and occur a high capacity of the composites since graphene is more flexible and bendable . In fact, these nanocomposites also display their versatility as a high‐capacity anode for SIBs . The summary of carbon supported Sn composite electrochemical properties is given in Table 1 .…”
Section: Carbon Supported Tin‐based Composite For Sibsmentioning
confidence: 99%
“…In recent years, Sn‐based anode materials gained extensive research attention due to their high theoretical capacities in both SIBs and LIBs . Nevertheless, the major challenge for the practical use of Sn‐based anode materials is their poor cycling performance caused by the severe volume expansion.…”
Section: Introductionmentioning
confidence: 99%
“…It is experimentally reported that the volume of Sn can expand up to 420 % after reacting with Na and the formed Na 15 Sn 4 phase would easily cause electrode destabilization . Hence, in recent years, many efforts have been devoted to accommodating the deleterious volumetric expansion of Sn‐based anode materials by introducing additional metal elements to form bimetal oxides ,. It is found that compared to pure single tin oxide (SnO 2 ), its derivative bimetal oxides ( e. g .…”
Section: Introductionmentioning
confidence: 99%