2019
DOI: 10.1016/j.nanoen.2019.04.009
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V2O5 nanopaper as a cathode material with high capacity and long cycle life for rechargeable aqueous zinc-ion battery

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Cited by 289 publications
(169 citation statements)
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“…Multiple pairs of redox peaks can be observed, demonstrating a multistep Zn 2+ ion uptake/release process in V 2 O 5 cathode materials for AZIBs. [36][37][38][39] The CV curves of RA-V 2 O 5 at the 1 st cycle is different from that in the following cycles in terms of peak positions and proles, behind which the possible reason is the activation of V 2 O 5 . It is also seen that RA-V 2 O 5 exhibits more peaks than C-V 2 O 5 (Fig.…”
Section: Resultsmentioning
confidence: 91%
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“…Multiple pairs of redox peaks can be observed, demonstrating a multistep Zn 2+ ion uptake/release process in V 2 O 5 cathode materials for AZIBs. [36][37][38][39] The CV curves of RA-V 2 O 5 at the 1 st cycle is different from that in the following cycles in terms of peak positions and proles, behind which the possible reason is the activation of V 2 O 5 . It is also seen that RA-V 2 O 5 exhibits more peaks than C-V 2 O 5 (Fig.…”
Section: Resultsmentioning
confidence: 91%
“…50) and Li 4 Ti 5 O 12 , 51 and higher than D Zn 2+ of previously reported V 2 O 5 . 38 Besides, the D Zn 2+ of RA-V 2 O 5 is slightly higher than that of C-V 2 O 5 in general, due to much larger specic surface area and pore volume of the former. That is, the ion diffusion at the surface and interface is much more favourable than that within the bulk, therefore contributing to improved rate performances in RA-V 2 O 5 .…”
Section: Resultsmentioning
confidence: 91%
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“…In practice, despite the high theoretic capacity as both anode and cathode mate-rials for LIBs, low electrical conductivity and large volumetric strains of V 2 O 5 inevitably render poor rate capability and cycling stability [15][16][17]. To address these issues, carbon modification has been one of the most intuitive approaches to promote the electron transport for numerous TMOsbased electrode materials [18][19][20].…”
Section: Introductionmentioning
confidence: 99%
“…[6][7][8][9] However, the inadequate catalytic activity of air cathodes during the charging (OER) and discharging (ORR) process greatly hinders their practical application. [10][11][12][13] Inspired by the notable electrocatalytic activity, noble metal-based catalysts are the rst consideration for air cathodes, such as Pt/C for OER and Ir-/Ru-based oxides for the ORR. But, their high cost and insufficient catalytic bifunctionality cannot support a sustainable operation system of all-solid-state rechargeable ZABs.…”
Section: Introductionmentioning
confidence: 99%