2021
DOI: 10.1016/j.jelechem.2021.115383
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Nickel-doped monoclinic WO3 as high performance anode material for rechargeable lithium ion battery

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Cited by 38 publications
(18 citation statements)
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“…On the following cycles, the broad reduction peak at ~1.0 V on the cathodic scan and the corresponding oxidation peak at ~1.5 V on the reversible anodic scan are related to the Li + intercalation-deintercalation processes (Yoon et al, 2014;Li B. et al, 2016;Pathak et al, 2018;Huang et al, 2020). Additionally, the reduction peak observed below 0.25 V can be associated with the conversion of W 6+ to W 0 , which could cause the destruction of WO 3 lattice structure to a certain extent (Rastgoo-Deylami et al, 2021). The CV curves of the pure WO 3 bricks and WO 3 micro-spheres are also shown in Figures 3B,C, which exhibits similar shapes to that of hierarchical WO 3 agglomerates.…”
Section: Resultsmentioning
confidence: 96%
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“…On the following cycles, the broad reduction peak at ~1.0 V on the cathodic scan and the corresponding oxidation peak at ~1.5 V on the reversible anodic scan are related to the Li + intercalation-deintercalation processes (Yoon et al, 2014;Li B. et al, 2016;Pathak et al, 2018;Huang et al, 2020). Additionally, the reduction peak observed below 0.25 V can be associated with the conversion of W 6+ to W 0 , which could cause the destruction of WO 3 lattice structure to a certain extent (Rastgoo-Deylami et al, 2021). The CV curves of the pure WO 3 bricks and WO 3 micro-spheres are also shown in Figures 3B,C, which exhibits similar shapes to that of hierarchical WO 3 agglomerates.…”
Section: Resultsmentioning
confidence: 96%
“…Although WO 3 has been widely investigated as hosts for energy storage, the applications of WO 3 in LIBs are still hindered by its intrinsic inferior conductivity and large volume strain, resulting in poor rate capabilities, sluggish kinetics, and rapid capacity fading in practical applications, thus seriously inhibiting its further development (Sasidharan et al, 2012;Yoon et al, 2014;Bekarevich et al, 2020;Xiao Y. et al, 2021;Rastgoo-Deylami et al, 2021;Hou et al, 2022). To conquer the obstacles above, various strategies have been approached in recent reports, in which the well-known examples of one-dimension (1D) structure offered the natural starting point (Luo et al, 2021).…”
Section: Introductionmentioning
confidence: 99%
“…However, lead acid batteries have low energy density and toxic compounds, which can cause further serious adverse environmental effects. Lithium-ion batteries are one of the other commercial batteries with high electrochemical performances although they suffer from safety and cost obstacles due to high reactivity of lithium and organic solvents. , …”
Section: Introductionmentioning
confidence: 99%
“…However, the practical application of WO x as a LIB anode material is severely hindered by the poor capacity retention, low electrical conductivity, and volume expansion during the cycling process. 15,16 To overcome these drawbacks, it is necessary to further increase the electrical conductivity and alleviate the intrinsic stress. 17 Considerable effort has been made to develop nanostructured composite film electrodes to enhance the energy storage properties of LIBs.…”
Section: Introductionmentioning
confidence: 99%
“…Furthermore, WO x is an attractive anode material for LIBs due to its low cost, multiple oxidation states, high intrinsic density, and natural abundance. However, the practical application of WO x as a LIB anode material is severely hindered by the poor capacity retention, low electrical conductivity, and volume expansion during the cycling process 15,16 . To overcome these drawbacks, it is necessary to further increase the electrical conductivity and alleviate the intrinsic stress 17 …”
Section: Introductionmentioning
confidence: 99%