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| 024 | 7 |  | |a 10.1002/adma.202505368 
  |2 doi | 
| 028 | 5 | 2 | |a pubmed25n1594.xml | 
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| 041 |  |  | |a eng | 
| 100 | 1 |  | |a Liu, Mingquan 
  |e verfasserin 
  |4 aut | 
| 245 | 1 | 0 | |a Constructing Continuously-Distributed and Crystalline-NaF-Rich SEI on Hard Carbon Anode Through Binder Chemistry for High-Performance Sodium-Ion Batteries | 
| 264 |  | 1 | |c 2025 | 
| 336 |  |  | |a Text 
  |b txt 
  |2 rdacontent | 
| 337 |  |  | |a ƒaComputermedien 
  |b c 
  |2 rdamedia | 
| 338 |  |  | |a ƒa Online-Ressource 
  |b cr 
  |2 rdacarrier | 
| 500 |  |  | |a Date Revised 09.10.2025 | 
| 500 |  |  | |a published: Print-Electronic | 
| 500 |  |  | |a Citation Status PubMed-not-MEDLINE | 
| 520 |  |  | |a © 2025 Wiley‐VCH GmbH. | 
| 520 |  |  | |a Constructing the continuously-distributed and crystalline-NaF-rich solid electrolyte interface (CC-NaF-SEI) is expected to greatly promote the sodium storage performance of hard carbon (HC) anodes. However, such an impressive concept remains extremely intractable to achieve and lacks an efficiently cost-less strategy. Herein, the application of the commercially available LA133 binder is pioneered to engineer such a CC-NaF-SEI. Through comparative analysis of representative binders with distinct functional groups, reveals the critical role of binder chemistry on SEI regulation. Specifically, the LA133 binder demonstrates a dual-regulation mechanism for CC-NaF-SEI formation. The anion-coordination preferred ─CN bonds induce an anion-enriched interfacial solvation structure, and the ─CONH/─CN groups catalytically cleave P─F bond dissociation in PF6 -, synergistically promoting anion decomposition kinetics to form crystalline NaF. Furthermore, robust hydrogen bonds between multiple polar groups in LA133 and HC surface create the spatially anion-confined microenvironments to guide orderly anion decomposition and facilitate continuous NaF growth into a mechanically integrated SEI. The optimized CC-NaF-SEI endows HC anodes with exceptional sodium storage performance: an ultrahigh initial Coulombic efficiency (95.9%), remarkable reversible capacity (356.6 mAh g-1), and stable cycling under extreme conditions (-20-60 °C). This work provides fundamental insights into binder-SEI correlations, establishing a novel paradigm for interfacial optimization in sodium-ion batteries | 
| 650 |  | 4 | |a Journal Article | 
| 650 |  | 4 | |a anion decomposition | 
| 650 |  | 4 | |a binder | 
| 650 |  | 4 | |a continuously‐distributed | 
| 650 |  | 4 | |a crystalline‐NaF‐rich SEI | 
| 650 |  | 4 | |a hard carbon | 
| 700 | 1 |  | |a Cai, Junming 
  |e verfasserin 
  |4 aut | 
| 700 | 1 |  | |a Zuo, Yinze 
  |e verfasserin 
  |4 aut | 
| 700 | 1 |  | |a Luo, Wenhao 
  |e verfasserin 
  |4 aut | 
| 700 | 1 |  | |a Huang, Yifeng 
  |e verfasserin 
  |4 aut | 
| 700 | 1 |  | |a Qiu, Ruoxue 
  |e verfasserin 
  |4 aut | 
| 700 | 1 |  | |a Luo, Yiyuan 
  |e verfasserin 
  |4 aut | 
| 700 | 1 |  | |a Lei, Jie 
  |e verfasserin 
  |4 aut | 
| 700 | 1 |  | |a Yan, Hao 
  |e verfasserin 
  |4 aut | 
| 700 | 1 |  | |a Yan, Wei 
  |e verfasserin 
  |4 aut | 
| 700 | 1 |  | |a Zhang, Jiujun 
  |e verfasserin 
  |4 aut | 
| 773 | 0 | 8 | |i Enthalten in 
  |t Advanced materials (Deerfield Beach, Fla.) 
  |d 1998 
  |g 37(2025), 40 vom: 01. Okt., Seite e05368 
  |w (DE-627)NLM098206397 
  |x 1521-4095 
  |7 nnas | 
| 773 | 1 | 8 | |g volume:37 
  |g year:2025 
  |g number:40 
  |g day:01 
  |g month:10 
  |g pages:e05368 | 
| 856 | 4 | 0 | |u http://dx.doi.org/10.1002/adma.202505368 
  |3 Volltext | 
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| 952 |  |  | |d 37 
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  |h e05368 |