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A rationally designed 3D interconnected porous tin dioxide cube with reserved space for volume expansion as an advanced anode of lithium-ion batteries
Kong, SY; Xu, JJ; Lin, GX; Zhang, SN; Dong, WJ; Wang, JC; Huang, FQ
2020-09-14
Source PublicationCHEMICAL COMMUNICATIONS
ISSN1359-7345
Issue71Pages:10289
SubtypeArticle
AbstractTo work against the volume expansion (similar to 300%) of SnO(2)during lithiation, here a sub-micro sized, interconnected, and porous SnO(2)cube with rationally designed reserved space (similar to 375%) is synthesizedviaan artful topochemistry route (CaSn(OH)(6)-CaSnO3-SnO2). Owing to its microstructure, this novel material harvests enhanced lithium-storage performance.
DOI10.1039/d0cc03948a
WOS KeywordATOMIC LAYER DEPOSITION ; SNO2
Language英语
WOS Research AreaChemistry
PublisherROYAL SOC CHEMISTRY
Citation statistics
Document Type期刊论文
Identifierhttp://ir.sic.ac.cn/handle/331005/27761
Collection中国科学院上海硅酸盐研究所
Recommended Citation
GB/T 7714
Kong, SY,Xu, JJ,Lin, GX,et al. A rationally designed 3D interconnected porous tin dioxide cube with reserved space for volume expansion as an advanced anode of lithium-ion batteries[J]. CHEMICAL COMMUNICATIONS,2020(71):10289.
APA Kong, SY.,Xu, JJ.,Lin, GX.,Zhang, SN.,Dong, WJ.,...&Huang, FQ.(2020).A rationally designed 3D interconnected porous tin dioxide cube with reserved space for volume expansion as an advanced anode of lithium-ion batteries.CHEMICAL COMMUNICATIONS(71),10289.
MLA Kong, SY,et al."A rationally designed 3D interconnected porous tin dioxide cube with reserved space for volume expansion as an advanced anode of lithium-ion batteries".CHEMICAL COMMUNICATIONS .71(2020):10289.
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