2020
DOI: 10.1038/s41586-020-2637-6
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A disordered rock salt anode for fast-charging lithium-ion batteries

Abstract: Rechargeable lithium-ion batteries with high energy density that can be safely charged and discharged at high rates are desirable for electrified transportation and other applications 1-3. However, the sub-optimal intercalation potentials of current anodes result in a trade-off between energy density, power and safety. Here we report that disordered rock salt 4,5 Li3+xV2O5 can be used as a fast-charging anode that can reversibly cycle two lithium ions at an average voltage of about 0.6 volts versus a Li/Li + r… Show more

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Cited by 349 publications
(298 citation statements)
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“…Recently, a disordered rock salt Li 3+ x V 2 O 5 (LVO) was reported to be used as a fast‐charging anode that can reversibly cycle two Li ions at an average voltage of ≈0.6 V (versus Li/ Li + ). [ 93 ] Its low voltage and high rate capability are attributed to a redistributive Li intercalation mechanism with low energy barriers. The Li diffusion in LVO is more than an order of magnitude faster than that in graphite.…”
Section: Regulation Of Mass Transport Behaviormentioning
confidence: 99%
See 1 more Smart Citation
“…Recently, a disordered rock salt Li 3+ x V 2 O 5 (LVO) was reported to be used as a fast‐charging anode that can reversibly cycle two Li ions at an average voltage of ≈0.6 V (versus Li/ Li + ). [ 93 ] Its low voltage and high rate capability are attributed to a redistributive Li intercalation mechanism with low energy barriers. The Li diffusion in LVO is more than an order of magnitude faster than that in graphite.…”
Section: Regulation Of Mass Transport Behaviormentioning
confidence: 99%
“…Reproduced with permission. [ 93 ] Copyright 2020, Springer Nature. c) The preparation of P/C composites base on P, an attractive anode material with high specific capacity and relatively low lithiation potential.…”
Section: Regulation Of Mass Transport Behaviormentioning
confidence: 99%
“…Reproduced with permission. [66] Copyright 2017, Springer Nature. www.afm-journal.de www.advancedsciencenews.com…”
Section: Vomentioning
confidence: 99%
“…[ 1 ] Lithium ion batteries (LIBs) with an unmatchable combination of high energy and power density, as well as mature manufacturing technology, are considered as the first choice for portable energy storage in the long run. [ 2 ] Despite LIBs have received extensive applications for the past 20 years, most progress was made at the manufacturing level [ 3 ] but not because of material advances. To date, very few types of anode materials have been reported to be viable for commercialization apart from the intercalation‐type graphite [ 4 ] and Li 4 Ti 5 O 12 .…”
Section: Figurementioning
confidence: 99%