大学化学

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新工科背景下二维共轭金属-有机框架在能源储存中的研究进展

何欣泽, 苏熹, 陈龙   

  1. 吉林大学化学学院, 吉林 长春 130012
  • 收稿日期:2026-07-03 录用日期:2026-08-27
  • 通讯作者: 苏熹 E-mail:suxi23@mails.jlu.edu.cn Xi Su
  • 基金资助:
    国家自然科学基金(52473211,22625502);长春市科技发展计划项目(2024GZZ03);吉林大学2026年大学生创新创业训练计划(S202610183229)

Advances in two-dimensional conjugated metal–organic frameworks for energy storage under Emerging Engineering Education

Xinze He, Xi Su, Long Chen   

  1. College of Chemistry, Jilin University, Changchun 130012, Jilin Province, China
  • Received:2026-07-03 Accepted:2026-08-27
  • Contact: Xi Su E-mail:suxi23@mails.jlu.edu.cn

摘要: 随着我国“双碳”战略的深入实施,开发高效、安全、可持续的二次电池储能技术已成为“新工科”背景下化学与材料学科的研究热点。二维共轭金属-有机框架(2D c-MOFs)作为一类新兴的二维共轭配位高分子,因其独特的π共轭结构、可调控的组成与高度有序的晶体结构,在能源储存领域展现出广阔应用前景。本文旨在介绍2D c-MOFs的结构设计策略,重点阐述其在锂/钠/钾离子电池及水系锌离子电池中的应用现状与储能机制。同时,结合“新工科”背景,探讨该前沿方向在高分子化学教学中的融入路径与实践意义,以期为培养具有跨学科视野的新型工程人才提供有益参考。

关键词: 新工科, 二维共轭金属-有机框架, 二次电池, 储能机制

Abstract: With the ongoing implementation of China’s “dual-carbon” strategy, the development of efficient, safe, and sustainable rechargeable battery technologies has become a central research priority in chemistry and materials science within the context of Emerging Engineering Education. Two-dimensional conjugated metal– organic frameworks (2D c-MOFs), as an emerging class of two-dimensional conjugated coordination polymers, hold great promise for energy storage applications owing to their unique π-conjugated architecture, tunable compositions, and highly ordered crystalline structures. This article outlines the structural design strategies for 2D c-MOFs and highlights their current applications in lithium-ion, sodium-ion, potassium-ion, and aqueous zinc-ion batteries, with particular emphasis on the underlying energy storage mechanisms. Furthermore, in light of Emerging Engineering Education, this review explores the integration of this cutting-edge topic into polymer chemistry teaching and discusses its practical implications, aiming to offer valuable insights for nurturing interdisciplinary engineering talents.

Key words: Emerging Engineering Education, Two-dimensional conjugated metal-organic frameworks, Rechargeable batteries, Energy storage mechanisms