| Literature DB >> 35492998 |
Shihang Zhao1, Xianbo Yu1, Hongmei Chen1, Kai Tao1, Yaoping Hu1, Lei Han1,2.
Abstract
Uniform one-dimensional metal oxide hollow tubular nanofibers (HTNs) have been controllably prepared using a calcination strategy using electrospun polymer nanofibers as soft templates and zeolitic imidazolate framework nanoparticles as precursors. Utilizing the general synthesis method, the ZnO HTNs, Co3O4 HTNs and ZnCo2O4 HTNs have been successfully prepared. The optimal ZnCo2O4 HTNs, as a representative substance applied in supercapacitors as the positive electrode, delivers a high specific capacity of 181 C g-1 at a current density of 0.5 A g-1, an excellent rate performance of 75.14% and a superior capacity retention of 97.42% after 10 000 cycles. Furthermore, an asymmetric supercapacitor assembled from ZnCo2O4 HTNs and active carbon also shows a stable and ultrahigh cycling stability with 95.38% of its original capacity after 20 000 cycle tests. This journal is © The Royal Society of Chemistry.Entities:
Year: 2020 PMID: 35492998 PMCID: PMC9051560 DOI: 10.1039/d0ra01844a
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Scheme 1Schematic illustration of the synthesis of metal oxides HTNs.
Fig. 1(a) SEM images of PAN@Zn(Ac)2/Co(Ac)2 composite nanofibers; (b) SEM and (c) TEM images of PAN@ZnCo-ZIF core–shell nanofibers; (d) SEM and (e and f) TEM images of ZnCo2O4 HTNs; (g) HRTEM image and SAED pattern (inset) of ZnCo2O4 HTNs; (h–k) elemental mapping images of ZnCo2O4 HTNs. Scale bars in inset of (a, b and d) are 200 nm.
Fig. 2(a) XPS survey spectra of ZnCo2O4 HTNs and the high-resolution spectra of (b) Zn 2p, (c) Co 2p and (d) O 1s.
Fig. 3Electrochemical performance comparison of ZnO HTNs, Co3O4 HTNs and ZnCo2O4 HTNs: (a) CV curves at 50 mV s−1; (b) GCD curves at 0.5 A g−1; (c) specific capacity at different current densities; (d) EIS spectra in Nyquist plots; (e) cycling performance at current density of 5 A g−1.
Fig. 4Electrochemical performance of the ZnCo2O4 HTNs//AC ASC: (a) CV curves at different scan rates; (b) GCD curves at different current densities; (c) specific capacity at different current densities; (d) cycling performance at the current density of 3 A g−1.