Utilizing rice husk-derived Si/C composites to enhance energy capacity and cycle sustainability of lithium-ion batteries

被引:1
作者
Askaruly, Kydyr [1 ,2 ,3 ,7 ]
Idrissov, Nurlan [1 ,5 ]
Abdisattar, Alisher [1 ,2 ,3 ,7 ]
Azat, Seitkhan [1 ]
Kuli, Zhanserik [1 ]
Yeleuov, Mukhtar [1 ,2 ,3 ,7 ]
Malchik, Fyodor [6 ]
Daulbayev, Chingis [5 ,7 ]
Yszhan, Yelriza [1 ]
Sarsembayeva, Bibigul [1 ]
Nysanbayeva, Saltanat [4 ]
机构
[1] Satbayev Univ, Alma Ata, Kazakhstan
[2] Inst Combust Problems, Alma Ata, Kazakhstan
[3] BesSaiman Grp, Alma Ata, Kazakhstan
[4] Almaty Univ Power Engn & Telecommun, Alma Ata, Kazakhstan
[5] Inst Nucl Phys, Alma Ata, Kazakhstan
[6] Farabi Univ, Ctr Phys Chem Methods Res & Anal, Alma Ata, Kazakhstan
[7] Engn & Sci Hub, Alma Ata, Kazakhstan
关键词
Silicon; Activated carbon; Composite; lithium-ion battery; Rice husk; ANODE MATERIALS; SILICON; PERFORMANCE; REDUCTION; NANOTUBES; GRAPHENE;
D O I
10.1016/j.diamond.2024.111631
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Traditional graphite anodes have a specific capacity of approximately 372 mAh/g, whereas silicon presents a promising alternative with theoretical capacities reaching up to 4200 mAh/g. However, substantial volumetric changes in silicon during lithiation lead to rapid degradation of capacitance. This study explores the utilization of rice husk, an abundant agricultural waste, as a raw material for Si/C composites. Rice husk inherently contains significant amounts of silicon and carbon, rendering it a sustainable and economical source. The activated carbon was derived from rice husk by carbonization and thermochemically activation with activation temperature of 850 C-degrees and KOH agent. The silicon dioxide was derived from rice husk by subjecting to annealing in a muffle furnace at 650 C-degrees for 4 h following NaOH and HCl solution treatment. The silicon was derived from silicon dioxide by thermomagnesium treatment in a tube furnace at 700 C-degrees for 120 min. SEM, elemental analysis, XRD, Raman, and FT-IR were used to characterize the materials to evaluate their morphological and structural composition. Electrochemical performance evaluation demonstrated improved energy capacity and stability, highlighting rice husk-derived Si/C composites as a viable solution for advancing lithium-ion battery performance. This innovative approach not only lowers production costs but also supports sustainable development by effectively utilizing agricultural waste.
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页数:10
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