Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/79975
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dc.contributor.authorXing, A.-
dc.contributor.authorTian, S.-
dc.contributor.authorTang, H.-
dc.contributor.authorLosic, D.-
dc.contributor.authorBao, Z.-
dc.date.issued2013-
dc.identifier.citationRSC Advances: an international journal to further the chemical sciences, 2013; 3(26):10145-10149-
dc.identifier.issn2046-2069-
dc.identifier.issn2046-2069-
dc.identifier.urihttp://hdl.handle.net/2440/79975-
dc.description.abstractIn this work we demonstrate a scalable synthetic approach for the transformation of rice husk, a cheap source of biosilica, into highly valuable porous silicon using a magnesiothermic reaction. The synthesized porous silicon with a high porosity (0.62 cm³ g⁻¹) and a large specific surface area (150.1 m² g⁻¹) is a promising material for lithium-ion battery applications. As an anode material, the porous silicon can retain a considerably high reversible capacity of 1220.2 mA h g⁻¹ at a specific discharge–charge current of 1000 mA g⁻¹ after 100 cycles. The approach is generic and can be applied to other sources of biogenic silica to obtain high-performance and highly valuable porous Si for many applications.-
dc.description.statementofresponsibilityAn Xing, Shuang Tian, Huang Tang, Dusan Losic and Zhihao Bao-
dc.language.isoen-
dc.publisherRoyal Society of Chemistry-
dc.rights© Copyright status unknown-
dc.source.urihttp://dx.doi.org/10.1039/c3ra41889h-
dc.titleMesoporous silicon engineered by the reduction of biosilica from rice husk as a high-performance anode for lithium-ion batteries-
dc.typeJournal article-
dc.identifier.doi10.1039/c3ra41889h-
dc.relation.granthttp://purl.org/au-research/grants/arc/FT110100711-
pubs.publication-statusPublished-
dc.identifier.orcidLosic, D. [0000-0002-1930-072X]-
Appears in Collections:Aurora harvest
Chemical Engineering publications

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