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- W3201995064 endingPage "178" @default.
- W3201995064 startingPage "172" @default.
- W3201995064 abstract "Rechargeable magnesium and calcium metal batteries (RMBs and RCBs) are promising alternatives to lithium-ion batteries because of the high crustal abundance and capacity of magnesium and calcium. Yet, they are plagued by sluggish kinetics and parasitic reactions. We found a family of methoxyethyl-amine chelants that greatly promote interfacial charge transfer kinetics and suppress side reactions on both the cathode and metal anode through solvation sheath reorganization, thus enabling stable and highly reversible cycling of the RMB and RCB full cells with energy densities of 412 and 471 watt-hours per kilogram, respectively. This work provides a versatile electrolyte design strategy for divalent metal batteries." @default.
- W3201995064 created "2021-10-11" @default.
- W3201995064 creator A5009440633 @default.
- W3201995064 creator A5023893251 @default.
- W3201995064 creator A5031624775 @default.
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- W3201995064 creator A5051125527 @default.
- W3201995064 creator A5076384717 @default.
- W3201995064 date "2021-10-08" @default.
- W3201995064 modified "2023-10-10" @default.
- W3201995064 title "Solvation sheath reorganization enables divalent metal batteries with fast interfacial charge transfer kinetics" @default.
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- W3201995064 doi "https://doi.org/10.1126/science.abg3954" @default.
- W3201995064 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/34618574" @default.