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Activated Carbon-Decorated Spherical Silicon Nanocrystal Composites Synchronously-Derived from Rice Husks for Anodic Source of Lithium-Ion Battery
- Sekar, Sankar;
- Ahmed, Abu Talha Aqueel;
- Inamdar, Akbar I.;
- Lee, Youngmin;
- Im, Hyunsik;
- 외 2명
WEB OF SCIENCE
45SCOPUS
51초록
The nanocomposites of activated-carbon-decorated silicon nanocrystals (AC < nc-Si > AC) were synchronously derived in a single step from biomass rice husks, through the simple route of the calcination method together with the magnesiothermic reduction process. The final product, AC < nc-Si > AC, exhibited an aggregated structure of activated-carbon-encapsulated nanocrystalline silicon spheres, and reveals a high specific surface area (498.5 m(2)/g). Owing to the mutualization of advantages from both silicon nanocrystals (i.e., low discharge potential and high specific capacity) and activated carbon (i.e., high porosity and good electrical conductivity), the AC < nc-Si > AC nanocomposites are able to play a substantial role as an anodic source material for the lithium-ion battery (LIB). Namely, a high coulombic efficiency (97.5%), a high discharge capacity (716 mAh/g), and a high reversible specific capacity (429 mAh/g after 100 cycles) were accomplished when using AC < nc-Si > AC as an LIB anode. The results advocate that the simultaneous synthesis of biomass-derived AC < nc-Si > AC is beneficial for green energy-storage device applications.
키워드
- 제목
- Activated Carbon-Decorated Spherical Silicon Nanocrystal Composites Synchronously-Derived from Rice Husks for Anodic Source of Lithium-Ion Battery
- 저자
- Sekar, Sankar; Ahmed, Abu Talha Aqueel; Inamdar, Akbar I.; Lee, Youngmin; Im, Hyunsik; Kim, Deuk Young; Lee, Sejoon
- 발행일
- 2019-07
- 유형
- Article
- 저널명
- NANOMATERIALS
- 권
- 9
- 호
- 7