Matches in SemOpenAlex for { <https://semopenalex.org/work/W4313254834> ?p ?o ?g. }
- W4313254834 endingPage "825" @default.
- W4313254834 startingPage "816" @default.
- W4313254834 abstract "Rechargeable magnesium (Mg) metal batteries (RMBs) have received extensive attention due to their high theoretical capacity and superior safety. However, the heterogeneous plating/stripping behavior and detrimental corrosion issues of Mg metal hinder the practical application of RMBs. The failure of the Mg metal anode when cycling under high areal capacity utilization is of rising concern. Herein, we have developed a facile and effective approach to realize stable Mg metal anode with artificial solid-electrolyte interphase (SEI) layers by in-situ dynamic self-assembly coordination of phytic acid (PA) with Mg2+. Especially, the 3D porous channel structure of interfacial PA skeleton could regulate ion flux via coordination, efficiently homogenizing the distribution of Mg2+ and successfully triggers uniform plating/stripping Mg by experimental results and theoretical calculation. Encouragingly, the symmetric cells using as-prepared Mg metal anode possess low voltage hysteresis (250 mV) and long cycle life (780 cycles) under harsh utilization condition (3 mA cm−2, 1 mAh cm−2). The effectiveness of 3D porous channel buffer artificial SEI is further demonstrated in the Mg-Mo6S8 full cells. Such an advanced strategy for modulating Mg2+ transport provides an avenue to addressing the basic challenges for RMBs, which can potentially be extended to other construction of highly tolerant and conductive artificial SEI layers." @default.
- W4313254834 created "2023-01-06" @default.
- W4313254834 creator A5002557498 @default.
- W4313254834 creator A5008361790 @default.
- W4313254834 creator A5010517666 @default.
- W4313254834 creator A5022781252 @default.
- W4313254834 creator A5030689354 @default.
- W4313254834 creator A5035811517 @default.
- W4313254834 creator A5049191661 @default.
- W4313254834 creator A5082139231 @default.
- W4313254834 creator A5086963650 @default.
- W4313254834 date "2023-01-01" @default.
- W4313254834 modified "2023-10-18" @default.
- W4313254834 title "Rational design of artificial interphase buffer layer with 3D porous channel for uniform deposition in magnesium metal anodes" @default.
- W4313254834 cites W1416295813 @default.
- W4313254834 cites W1970127494 @default.
- W4313254834 cites W1978474228 @default.
- W4313254834 cites W1979544533 @default.
- W4313254834 cites W1981368803 @default.
- W4313254834 cites W2007395042 @default.
- W4313254834 cites W2042335932 @default.
- W4313254834 cites W2058846885 @default.
- W4313254834 cites W2083222334 @default.
- W4313254834 cites W2089524679 @default.
- W4313254834 cites W2319623810 @default.
- W4313254834 cites W2322358865 @default.
- W4313254834 cites W2323353601 @default.
- W4313254834 cites W2326478613 @default.
- W4313254834 cites W2518855823 @default.
- W4313254834 cites W2570780803 @default.
- W4313254834 cites W2796568833 @default.
- W4313254834 cites W2905726631 @default.
- W4313254834 cites W2913278198 @default.
- W4313254834 cites W2939058060 @default.
- W4313254834 cites W2981795899 @default.
- W4313254834 cites W2991833799 @default.
- W4313254834 cites W2995392356 @default.
- W4313254834 cites W2995442447 @default.
- W4313254834 cites W2996721257 @default.
- W4313254834 cites W2997437009 @default.
- W4313254834 cites W2998849785 @default.
- W4313254834 cites W3010342933 @default.
- W4313254834 cites W3010428410 @default.
- W4313254834 cites W3011295855 @default.
- W4313254834 cites W3040721556 @default.
- W4313254834 cites W3083072213 @default.
- W4313254834 cites W3086963814 @default.
- W4313254834 cites W3095020467 @default.
- W4313254834 cites W3141436063 @default.
- W4313254834 cites W3142643443 @default.
- W4313254834 cites W3158933213 @default.
- W4313254834 cites W3159432967 @default.
- W4313254834 cites W3170139731 @default.
- W4313254834 cites W3176509478 @default.
- W4313254834 cites W3192764090 @default.
- W4313254834 cites W3201995064 @default.
- W4313254834 cites W3204987902 @default.
- W4313254834 cites W4210452349 @default.
- W4313254834 cites W4212985304 @default.
- W4313254834 cites W4213167262 @default.
- W4313254834 cites W4220904089 @default.
- W4313254834 cites W4223955819 @default.
- W4313254834 cites W4226094807 @default.
- W4313254834 cites W4226239766 @default.
- W4313254834 cites W4234602429 @default.
- W4313254834 cites W4254736414 @default.
- W4313254834 cites W4280509946 @default.
- W4313254834 cites W4281762551 @default.
- W4313254834 cites W4293153222 @default.
- W4313254834 doi "https://doi.org/10.1016/j.ensm.2022.12.041" @default.
- W4313254834 hasPublicationYear "2023" @default.
- W4313254834 type Work @default.
- W4313254834 citedByCount "10" @default.
- W4313254834 countsByYear W43132548342023 @default.
- W4313254834 crossrefType "journal-article" @default.
- W4313254834 hasAuthorship W4313254834A5002557498 @default.
- W4313254834 hasAuthorship W4313254834A5008361790 @default.
- W4313254834 hasAuthorship W4313254834A5010517666 @default.
- W4313254834 hasAuthorship W4313254834A5022781252 @default.
- W4313254834 hasAuthorship W4313254834A5030689354 @default.
- W4313254834 hasAuthorship W4313254834A5035811517 @default.
- W4313254834 hasAuthorship W4313254834A5049191661 @default.
- W4313254834 hasAuthorship W4313254834A5082139231 @default.
- W4313254834 hasAuthorship W4313254834A5086963650 @default.
- W4313254834 hasConcept C127313418 @default.
- W4313254834 hasConcept C127413603 @default.
- W4313254834 hasConcept C147789679 @default.
- W4313254834 hasConcept C159985019 @default.
- W4313254834 hasConcept C171250308 @default.
- W4313254834 hasConcept C17525397 @default.
- W4313254834 hasConcept C185592680 @default.
- W4313254834 hasConcept C191897082 @default.
- W4313254834 hasConcept C192562407 @default.
- W4313254834 hasConcept C20625102 @default.
- W4313254834 hasConcept C2776985018 @default.
- W4313254834 hasConcept C29452124 @default.
- W4313254834 hasConcept C41952129 @default.
- W4313254834 hasConcept C42360764 @default.