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Enhanced Regional Electric Potential Difference of Graphdiyne Through Asymmetric Substitution Strategy Boosts Li+Migration in Composite Polymer Solid-State Electrolyte

Chao Jiang Kaihang Wang Luwei Zhang Chunfang Zhang Ning Wang

纳微快报(英文)2025,Vol.17Issue(11):155-174,20.
纳微快报(英文)2025,Vol.17Issue(11):155-174,20.DOI:10.1007/s40820-025-01790-5

Enhanced Regional Electric Potential Difference of Graphdiyne Through Asymmetric Substitution Strategy Boosts Li+Migration in Composite Polymer Solid-State Electrolyte

Enhanced Regional Electric Potential Difference of Graphdiyne Through Asymmetric Substitution Strategy Boosts Li+Migration in Composite Polymer Solid-State Electrolyte

Chao Jiang 1Kaihang Wang 1Luwei Zhang 1Chunfang Zhang 2Ning Wang1

作者信息

  • 1. Shandong Provincial Key Laboratory for Science of Material Creation and Energy Conversion,Science Center for Material Creation and Energy Conversion,School of Chemistry and Chemical Engineering,Shandong University,Jinan 250100,People's Republic of China
  • 2. College of Chemistry and Materials Science,Hebei Key Laboratory of Analytical Science and Technology,Hebei University,Baoding 071002,People's Republic of China
  • 折叠

摘要

关键词

Graphdiyne/Asymmetric substitution/Enhanced regional electric potential difference/Solid-state electrolytes/Poly(ethylene oxide)

Key words

Graphdiyne/Asymmetric substitution/Enhanced regional electric potential difference/Solid-state electrolytes/Poly(ethylene oxide)

引用本文复制引用

Chao Jiang,Kaihang Wang,Luwei Zhang,Chunfang Zhang,Ning Wang..Enhanced Regional Electric Potential Difference of Graphdiyne Through Asymmetric Substitution Strategy Boosts Li+Migration in Composite Polymer Solid-State Electrolyte[J].纳微快报(英文),2025,17(11):155-174,20.

基金项目

This work is supported by the National Key Research and Development Project of China(2022YFA1204500,2022YFA1204503,2018YFA0703501),the National Natural Sci-ence Foundation of China(22275115,21875274,11704024),the Natural Science Foundation of Shandong Province(ZR2024ZD02),Natural Science Foundation of Hebei Province(B2020201006),Hebei Province Innovation Capability Enhancement Plan Project(22567620H),Young Scholarship Funding of Shandong University.Post-graduate Innovation Fund Project of Open Laboratory Project Fund of Hebei University(HBU2025SS010),and Basic Research Project of Shandong University—Xin'an Group Silicon-Based High-End New Materials Institute.The authors acknowledge com-putational support from the High-Performance Computing Center of Hebei University. (2022YFA1204500,2022YFA1204503,2018YFA0703501)

纳微快报(英文)

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