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Entropy-Assisted Anion-Reinforced Solvation Structure for Fast-Charging Sodium-Ion Full Batteries.
Zhou, Xunzhu; Chen, Xiaomin; Kuang, Wenxi; Zhu, Wenqing; Zhang, Xiaosa; Liu, Xiaohao; Wu, Xingqiao; Zhang, Longhai; Zhang, Chaofeng; Li, Lin; Wang, Jiazhao; Chou, Shulei.
Affiliation
  • Zhou X; Anhui University, School of Materials Science and Engineering, Anhui, 230601, Anhui, CHINA.
  • Chen X; Wenzhou University, College of Chemistry and Materials Engineering, Wenzhou, 325035, wenzhou, CHINA.
  • Kuang W; Wenzhou University, College of Chemistry and Materials Engineering, Wenzhou, 325035, Wenzhou, CHINA.
  • Zhu W; Wenzhou University, College of Chemistry and Materials Engineering, Wenzhou, 325035, wenzhou, CHINA.
  • Zhang X; Wenzhou University, College of Chemistry and Materials Engineering, CHINA.
  • Liu X; Wenzhou University, School of Materials Science and Engineering, CHINA.
  • Wu X; Wenzhou University, College of Chemistry and Materials Engineering, Wenzhou, 325035, Wenzhou, CHINA.
  • Zhang L; Anhui University, School of Materials Science and Engineering, Anhui University, Anhui, CHINA.
  • Zhang C; Anhui University, School of Materials Science and Engineering, Anhui University, Anhui, CHINA.
  • Li L; Wenzhou University, College of Chemistry and Materials Engineering, Wenzhou, 325035, wenzhou, CHINA.
  • Wang J; Wenzhou University, College of Chemistry and Materials Engineering, CHINA.
  • Chou S; Wenzhou University, College of Chemistry and Materials Engineering, Wenzhou, Wenzhou, CHINA.
Angew Chem Int Ed Engl ; : e202410494, 2024 Jul 15.
Article in En | MEDLINE | ID: mdl-39007424
ABSTRACT
Anion-reinforced solvation structure favors the formation of inorganic-rich robust electrode-electrolyte interface, which endows fast ion transport and high strength modulus to enable improved electrochemical performance. However, such a unique solvation structure inevitably injures the ionic conductivity of electrolytes and limits the fast-charging performance. Herein, a trade-off in tuning anion-reinforced solvation structure and high ionic conductivity is realized by the entropy-assisted hybrid ester-ether electrolyte. Anion-reinforced solvation sheath with more anions occupying the inner Na+ shell is constructed by introducing the weakly coordinated ether tetrahydrofuran into the commonly used ester-based electrolyte, which merits the accelerated desolvation energy and gradient inorganic-rich electrode-electrolyte interface. The improved ionic conductivity is attributed to the weakly diverse solvation structures induced by entropy effect. These enable the enhanced rate performance and cycling stability of Prussian blue||hard carbon full cells with high electrode mass loading. More importantly, the practical application of the designed electrolyte was further demonstrated by industry-level 18650 cylindrical cells.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Angew Chem Int Ed Engl Year: 2024 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Angew Chem Int Ed Engl Year: 2024 Document type: Article