2022
DOI: 10.1007/s12633-021-01528-z
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Trash to Treasure: Harmful Fly Ash Derived Silicon Nanoparticles for Enhanced Lithium-Ion Batteries

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Cited by 6 publications
(7 citation statements)
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“…The urge to explore new resources to design cost-effective and environment-friendly synthetic routes to prepare carbon and silicon nanomaterials has fueled the efforts to recycle waste materials. 22,28,34,54 A source of carbon or silicon, a supply of energy, and a template or catalyst are known to be essential for well-structured nanomaterials. 51 The employment of low energy methods (e.g., low-temperature), natural/recyclable carbon or silicon precursors, and suitable templates are thus required.…”
Section: Recycling Of Ashes To Nanomaterialsmentioning
confidence: 99%
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“…The urge to explore new resources to design cost-effective and environment-friendly synthetic routes to prepare carbon and silicon nanomaterials has fueled the efforts to recycle waste materials. 22,28,34,54 A source of carbon or silicon, a supply of energy, and a template or catalyst are known to be essential for well-structured nanomaterials. 51 The employment of low energy methods (e.g., low-temperature), natural/recyclable carbon or silicon precursors, and suitable templates are thus required.…”
Section: Recycling Of Ashes To Nanomaterialsmentioning
confidence: 99%
“…Reproduced with permission. 54 Copyright 2022, Springer. (b) Amorphous SiO 2 and C/SiO 2 composite prepared from FA.…”
Section: Ash-derived Nanomaterials For Batteriesmentioning
confidence: 99%
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“…Liu et al [108] used Si-rich fly ash as a raw material to produce SiO 2 through a process of alkali fusion, deionized water dissolution, acidification precipitation, washing and drying, and calcination. Finally, low-cost Si particles were obtained through a magnesiothermic reaction for use as anode materials.…”
Section: The Application Of Solid-waste-based Porous Materials In Bat...mentioning
confidence: 99%