2020
DOI: 10.1016/j.ensm.2019.06.031
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Si@Si3N4@C composite with egg-like structure as high-performance anode material for lithium ion batteries

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Cited by 131 publications
(89 citation statements)
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“…The Si thin films obtained via CVD usually have polycrystalline structures. In preparation of Si/C anode materials, CVD can not only achieve uniform Si growth in carbon matrix or outside of CNT, [44,56,73,74] but also obtain amorphous carbon or CNT outside of Si [40,47,51,75–83] . Sometimes, both Si and carbon can be prepared by CVD [84–87,89] …”
Section: Synthesis Methods Of Silicon/carbon Anodesmentioning
confidence: 99%
See 1 more Smart Citation
“…The Si thin films obtained via CVD usually have polycrystalline structures. In preparation of Si/C anode materials, CVD can not only achieve uniform Si growth in carbon matrix or outside of CNT, [44,56,73,74] but also obtain amorphous carbon or CNT outside of Si [40,47,51,75–83] . Sometimes, both Si and carbon can be prepared by CVD [84–87,89] …”
Section: Synthesis Methods Of Silicon/carbon Anodesmentioning
confidence: 99%
“…In preparation of Si/C anode materials, CVD can not only achieve uniform Si growth in carbon matrix or outside of CNT, [44,56,73,74] but also obtain amorphous carbon or CNT outside of Si. [40,47,51,[75][76][77][78][79][80][81][82][83] Sometimes, both Si and carbon can be prepared by CVD. [84][85][86][87]89] Wilson et al [88] firstly obtained nano-dispersed Si in carbon using CVD and they found that the silicon was mainly located in the unorganized regions of the carbon without disturbing the organized regions.…”
Section: Chemical Vapor Depositionmentioning
confidence: 99%
“…The smaller R ct values of pristine and cycled rGO@CVO electrode demonstrate that the rGO@CVO electrode possesses stable structure and good electrical conductivity, revealing the fast electron transfer and reaction kinetics of rGO@CVO electrode. The Na + diffusion coefficient (D Na+ ) is calculated by the equation of [39,40]. The b is the Warburg factor, which is the slope of the line Z' = R e + R ct + bω −1/2 [41].…”
Section: Lithium Ion Batteriesmentioning
confidence: 99%
“…Furthermore, it has been known that the kinetic property of the electrode is mainly related to the diffusion of Li + . [30][31][32] In this study, the conductive agent is a key factor to inuence the diffusion of Li + . The GITT analysis was conducted to determine the Li + diffusion coefficient of two representative SP and LCNT (Fig.…”
Section: Electrochemical Analysismentioning
confidence: 99%