2018
DOI: 10.1016/j.electacta.2018.09.169
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Highly efficient lithium container based on non-Wadsley-Roth structure Nb18W16O93 nanowires for electrochemical energy storage

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Cited by 57 publications
(44 citation statements)
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“…The similar wide‐scan XPS spectra of Mo 3 Nb 14 O 44 ‐M and Mo 3 Nb 14 O 44 ‐N (Figure ) indicate the existence of Mo, Nb, and O elements. The two XPS peaks centered at 233.05 and 236.15 eV (Figure 2d), respectively, match with the Mo‐3 d 5/2 and Mo‐3 d 3/2 binding energies of Mo 6+ , [ 11,23 ] those at 207.30 and 210.45 eV (Figure 2e), respectively, correspond to Nb‐3 d 5/2 and Nb‐3 d 3/2 of Nb 5+ , [ 24,25 ] and that at 530.11 eV (Figure 2f) can be attributed to O‐1 s of O 2– . [ 26,27 ] These XPS analyses reveal that the valence states of Mo, Nb, and O in both Mo 3 Nb 14 O 44 materials are, respectively, +6, +5, and –2, confirming the successful fabrications of pure Mo 3 Nb 14 O 44 through both the solid‐state reaction and electrospinning methods.…”
Section: Resultssupporting
confidence: 56%
“…The similar wide‐scan XPS spectra of Mo 3 Nb 14 O 44 ‐M and Mo 3 Nb 14 O 44 ‐N (Figure ) indicate the existence of Mo, Nb, and O elements. The two XPS peaks centered at 233.05 and 236.15 eV (Figure 2d), respectively, match with the Mo‐3 d 5/2 and Mo‐3 d 3/2 binding energies of Mo 6+ , [ 11,23 ] those at 207.30 and 210.45 eV (Figure 2e), respectively, correspond to Nb‐3 d 5/2 and Nb‐3 d 3/2 of Nb 5+ , [ 24,25 ] and that at 530.11 eV (Figure 2f) can be attributed to O‐1 s of O 2– . [ 26,27 ] These XPS analyses reveal that the valence states of Mo, Nb, and O in both Mo 3 Nb 14 O 44 materials are, respectively, +6, +5, and –2, confirming the successful fabrications of pure Mo 3 Nb 14 O 44 through both the solid‐state reaction and electrospinning methods.…”
Section: Resultssupporting
confidence: 56%
“…As can be seen in Fig. 2 a, all of the diffraction peaks can be well indexed to the orthorhombic tetragonal tungsten bronze (JCPDS No 75-0561) [ 32 , 36 ]. The sharp and well-recognized diffraction peaks demonstrates the high crystallinity arising from the high temperature annealing.…”
Section: Resultsmentioning
confidence: 99%
“…As already mentioned above, the electrochemical investigations on TTB-type NbW oxides gained momentum after the study on Nb18W16O93 had been published by Griffith et al in 2018 [1]. Several follow-up investigations confirmed the outstanding electrochemical performance of samples with this composition [8][9][10][11][12][13]. An orthorhombic structure Nb18W16O93 was proposed by Stephenson in 1968 to explain split reflections observed in higher order Laue zones of a twinned crystal with the composition Nb12W11O63 (6Nb2O5:11WO3) [14].…”
Section: Introductionmentioning
confidence: 94%