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controllablesynthesisofhollowmultishellstructuredco3o4withimprovedrateperformanceandcyclicstabilityforsupercapacitors
Wang Cong1; Wang Jiangyan1; Hu Wenping2; Wang Dan1
2020
Source Publicationchemicalresearchinchineseuniversities
ISSN1005-9040
Volume36Issue:1Pages:68
AbstractHollow multishelled structures(HoMSs) Co_3O_4 with specially appointed shell number(double-, triple- and quadruple-) were accurately prepared by a sequential templating approach. Due to the superiorities of inimitable porous multishelled structure, triple-HoMSs Co_3O_4 achieved the best performance among all the samples with a spe-cific capacitance of 1028.9 F/g at 10 mV/s and 688.2 F/g at 0.5 A/g, respectively. Furthermore, the electrode deli-vered a high rate performance(89.8% retention at 10 A/g) and excellent cycle stability(6.8% loss over 2000 cycles), showing a great promise for practical application in the future.
Language英语
Document Type期刊论文
Identifierhttp://ir.ipe.ac.cn/handle/122111/40154
Collection中国科学院过程工程研究所
Affiliation1.中国科学院过程工程研究所
2.天津大学
First Author Affilication中国科学院过程工程研究所
Recommended Citation
GB/T 7714
Wang Cong,Wang Jiangyan,Hu Wenping,et al. controllablesynthesisofhollowmultishellstructuredco3o4withimprovedrateperformanceandcyclicstabilityforsupercapacitors[J]. chemicalresearchinchineseuniversities,2020,36(1):68.
APA Wang Cong,Wang Jiangyan,Hu Wenping,&Wang Dan.(2020).controllablesynthesisofhollowmultishellstructuredco3o4withimprovedrateperformanceandcyclicstabilityforsupercapacitors.chemicalresearchinchineseuniversities,36(1),68.
MLA Wang Cong,et al."controllablesynthesisofhollowmultishellstructuredco3o4withimprovedrateperformanceandcyclicstabilityforsupercapacitors".chemicalresearchinchineseuniversities 36.1(2020):68.
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