Your browser doesn't support javascript.
loading
Facile Synthesis of Potassium Decahydrido-Monocarba-closo-Decaborate Imidazole Complex Electrolyte for All-Solid-State Potassium Metal Batteries.
Lu, Zhiwei; Qiu, Pengtao; Zhai, Hanyu; Zhang, Guo-Guo; Chen, Xin-Wei; Lu, Zhansheng; Wu, Yiying; Chen, Xuenian.
Affiliation
  • Lu Z; Zhengzhou University, College of Chemistry, CHINA.
  • Qiu P; Henan Normal University, Henan Key Laboratory of Boron Chemistry and Advanced Materials, School of Chemistry and Chemical Engineering, CHINA.
  • Zhai H; Henan Normal University, Henan Key Laboratory of Advanced Semiconductor & Functional Device Integration, School of Physics, CHINA.
  • Zhang GG; Henan Normal University, Henan Key Laboratory of Boron Chemistry and Advanced Materials, School of Chemistry and Chemical Engineering, CHINA.
  • Chen XW; Henan Normal University, Henan Key Laboratory of Boron Chemistry and Advanced Materials, School of Chemistry and Chemical Engineering, CHINA.
  • Lu Z; Henan Normal University, Henan Key Laboratory of Advanced Semiconductor & Functional Device Integration, School of Physics, CHINA.
  • Wu Y; The Ohio State University, Department of Chemistry and Biochemistry, UNITED STATES OF AMERICA.
  • Chen X; Zhengzhou University, College of Chemistry, 100 Science Ave., 450001, Zhengzhou, CHINA.
Angew Chem Int Ed Engl ; : e202412401, 2024 Sep 06.
Article in En | MEDLINE | ID: mdl-39243107
ABSTRACT
All-solid-state potassium metal batteries have caught increasing interest owing to their abundance, cost-effectiveness, and high energy/power density. However, their development is generally constrained by the lack of suitable solid-state electrolytes. Herein, we report a new complex KCB9H10·2C3H4N2, synthesized by grinding and heating the mixture of potassium decahydrido-monocarba-closo-decaborate (KCB9H10) and imidazole (C3H4N2) under mild conditions, to achieve the K-ion superionic solid-state electrolyte. The crystal structure was revealed as an orthorhombic lattice with the space group of Pna21 by FOX software. The diffusion properties for K+ in the crystal structure were calculated using the climbing image nudged elastic band (CI-NEB) method. KCB9H10·2C3H4N2 exhibited a high ionic conductivity of 1.3 × 10-4 S cm-1 at 30 °C, four orders of magnitude higher than that of KCB9H10. This ionic conductivity is also the highest value of hydridoborate-based K+ conductors reported. Moreover, KCB9H10·2C3H4N2 demonstrated a K+ transference number of 0.96, an electrochemical stability window of 1.2 to 3.2 V vs. K/K+, and good stability against the K metal coated by a layer of potassium imidazolate (KIm). These great performances make KCB9H10·2C3H4N2 a promising K-ion solid-state electrolyte.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Angew Chem Int Ed Engl / Angew. Chem. (Int. ed., Internet) / Angewandte Chemie (International ed. Internet) Year: 2024 Document type: Article Affiliation country: China Country of publication: Germany

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Angew Chem Int Ed Engl / Angew. Chem. (Int. ed., Internet) / Angewandte Chemie (International ed. Internet) Year: 2024 Document type: Article Affiliation country: China Country of publication: Germany