2015
DOI: 10.1016/j.jpowsour.2015.01.184
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Foamed mesoporous carbon/silicon composite nanofiber anode for lithium ion batteries

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Cited by 87 publications
(43 citation statements)
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“…Electrospinning is an easy approach to produce nanofibers on a large scale, and further pyrolysis or calcination produces mesopores in these nanofibers. The formation process of mesopores in nanofibers or nanotubes was explored and basically developed from two principles . First, mesopores can be obtained by pyrolysis and carbonization of polymers, which is generally associated with mass loss during calcination or sintering.…”
Section: Design Of Nonsimpmsmentioning
confidence: 99%
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“…Electrospinning is an easy approach to produce nanofibers on a large scale, and further pyrolysis or calcination produces mesopores in these nanofibers. The formation process of mesopores in nanofibers or nanotubes was explored and basically developed from two principles . First, mesopores can be obtained by pyrolysis and carbonization of polymers, which is generally associated with mass loss during calcination or sintering.…”
Section: Design Of Nonsimpmsmentioning
confidence: 99%
“…The decomposition and volatilization of the nanofibers during pyrolysis would result in the formation of pores. Second, many foaming agents generate mesopores after thermal treatment, such as diisopropyl azodiformate (DIPA) and aluminum acetylacetonate (AACA) . These foaming agents would decompose to form mesopores.…”
Section: Design Of Nonsimpmsmentioning
confidence: 99%
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“…Carbon/silicon composite was proved to exhibit a synergistic effect [79]. For example, Si/CNFs with mesopores were prepared by electrospinning PVA, aluminum acetylacetonate (AACA) and Si in DMF solution [80]. The mesoporous structure was generated by foaming NFs via AACA sublimation.…”
Section: Applicationsmentioning
confidence: 99%