Matches in SemOpenAlex for { <https://semopenalex.org/work/W4220854675> ?p ?o ?g. }
- W4220854675 endingPage "14273" @default.
- W4220854675 startingPage "14264" @default.
- W4220854675 abstract "To develop a high-energy-density lithium battery, there still are several severe challenges for Li metal anode: low Coulombic efficiency caused by its high chemical reactivity, Li dendrite formation, and dead Li accumulation during repeated plating/stripping processes. Especially, lithium dendrite growth imposes inferior cycling stability and serious safety issues. Herein, we propose a facile but effective strategy to suppress lithium dendrite growth through an artificial inorganic-polymer protective layer derived from sulfurized polyacrylonitrile on a polyethylene separator. Benefiting from the lithiated sulfurized polyacrylonitrile and poly(acrylic acid), the flexible and ion-conductive protective layer could regulate Li+ flux and facilitate dendrite-free lithium deposition. Consequently, lithium metal with the meritorious protective layer can achieve a long-term cycling with negligible overpotential rise in Li-Li symmetric cells, even at a high areal capacity of 5 mAh cm-2. Remarkably, such a protective layer enables stable cycling performance of Li-S cell with a high areal capacity (∼9 mAh cm-2). This work provides a valuable exploration strategy for potential industrial applications of high-performance lithium metal batteries." @default.
- W4220854675 created "2022-04-03" @default.
- W4220854675 creator A5006552791 @default.
- W4220854675 creator A5012726445 @default.
- W4220854675 creator A5017562594 @default.
- W4220854675 creator A5019005078 @default.
- W4220854675 creator A5047423896 @default.
- W4220854675 creator A5050038192 @default.
- W4220854675 creator A5061192706 @default.
- W4220854675 creator A5072199383 @default.
- W4220854675 creator A5074992126 @default.
- W4220854675 creator A5078813324 @default.
- W4220854675 date "2022-03-18" @default.
- W4220854675 modified "2023-10-14" @default.
- W4220854675 title "Achieve Stable Lithium Metal Anode by Sulfurized-Polyacrylonitrile Modified Separator for High-Performance Lithium Batteries" @default.
- W4220854675 cites W1939181633 @default.
- W4220854675 cites W1983895935 @default.
- W4220854675 cites W2053230744 @default.
- W4220854675 cites W2233059155 @default.
- W4220854675 cites W2265160803 @default.
- W4220854675 cites W2287078245 @default.
- W4220854675 cites W2310519341 @default.
- W4220854675 cites W2468042484 @default.
- W4220854675 cites W2563615861 @default.
- W4220854675 cites W2595092726 @default.
- W4220854675 cites W2621738925 @default.
- W4220854675 cites W2742075475 @default.
- W4220854675 cites W2747176286 @default.
- W4220854675 cites W2755922242 @default.
- W4220854675 cites W2762362056 @default.
- W4220854675 cites W2768460422 @default.
- W4220854675 cites W2772704912 @default.
- W4220854675 cites W2772878630 @default.
- W4220854675 cites W2774731903 @default.
- W4220854675 cites W2781695280 @default.
- W4220854675 cites W2782782732 @default.
- W4220854675 cites W2783524734 @default.
- W4220854675 cites W2801418313 @default.
- W4220854675 cites W2805532153 @default.
- W4220854675 cites W2805664599 @default.
- W4220854675 cites W2808335447 @default.
- W4220854675 cites W2884571359 @default.
- W4220854675 cites W2888442216 @default.
- W4220854675 cites W2896655753 @default.
- W4220854675 cites W2898758256 @default.
- W4220854675 cites W2899737069 @default.
- W4220854675 cites W2899851107 @default.
- W4220854675 cites W2900732791 @default.
- W4220854675 cites W2902023406 @default.
- W4220854675 cites W2905789671 @default.
- W4220854675 cites W2908077945 @default.
- W4220854675 cites W2920715038 @default.
- W4220854675 cites W2924731015 @default.
- W4220854675 cites W2942774876 @default.
- W4220854675 cites W2947303965 @default.
- W4220854675 cites W2955139692 @default.
- W4220854675 cites W2959444129 @default.
- W4220854675 cites W2969405248 @default.
- W4220854675 cites W2975788566 @default.
- W4220854675 cites W2979053466 @default.
- W4220854675 cites W2981878731 @default.
- W4220854675 cites W2987715169 @default.
- W4220854675 cites W2989488407 @default.
- W4220854675 cites W2990965166 @default.
- W4220854675 cites W3000577819 @default.
- W4220854675 cites W3039986103 @default.
- W4220854675 cites W3085708853 @default.
- W4220854675 cites W3112854046 @default.
- W4220854675 cites W3128323190 @default.
- W4220854675 cites W3134809101 @default.
- W4220854675 cites W3159374974 @default.
- W4220854675 cites W3166433053 @default.
- W4220854675 cites W3170181438 @default.
- W4220854675 cites W3193647007 @default.
- W4220854675 cites W4205684500 @default.
- W4220854675 doi "https://doi.org/10.1021/acsami.2c00768" @default.
- W4220854675 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/35302748" @default.
- W4220854675 hasPublicationYear "2022" @default.
- W4220854675 type Work @default.
- W4220854675 citedByCount "13" @default.
- W4220854675 countsByYear W42208546752022 @default.
- W4220854675 countsByYear W42208546752023 @default.
- W4220854675 crossrefType "journal-article" @default.
- W4220854675 hasAuthorship W4220854675A5006552791 @default.
- W4220854675 hasAuthorship W4220854675A5012726445 @default.
- W4220854675 hasAuthorship W4220854675A5017562594 @default.
- W4220854675 hasAuthorship W4220854675A5019005078 @default.
- W4220854675 hasAuthorship W4220854675A5047423896 @default.
- W4220854675 hasAuthorship W4220854675A5050038192 @default.
- W4220854675 hasAuthorship W4220854675A5061192706 @default.
- W4220854675 hasAuthorship W4220854675A5072199383 @default.
- W4220854675 hasAuthorship W4220854675A5074992126 @default.
- W4220854675 hasAuthorship W4220854675A5078813324 @default.
- W4220854675 hasConcept C121332964 @default.
- W4220854675 hasConcept C127413603 @default.
- W4220854675 hasConcept C130349721 @default.
- W4220854675 hasConcept C134018914 @default.
- W4220854675 hasConcept C147789679 @default.