大学化学 >> 2026, Vol. 41 >> Issue (7): 134-143.doi: 10.12461/PKU.DXHX202506051

科普 上一篇    

超分子化学:非共价密码构建的分子功能世界

史文颖, 孔祥贵, 鄢红   

  1. 北京化工大学化学学院, 北京 100029
  • 收稿日期:2025-06-13 录用日期:2025-10-09 发布日期:2026-06-27
  • 通讯作者: 孔祥贵, 鄢红 E-mail:kongxg@buct.edu.cn;yanhong@mail.buct.edu.cn Xianggui Kong, Hong Yan
  • 基金资助:
    北京化工大学化学学院2025年本科教学改革研究项目(2025HXJG18,2025HXJG12);北京化工大学化学学院2024年本科教学改革研究项目(2024HXJG06);2022年北京高等教育"本科教学改革创新项目"重点项目"面向国家创新需求的多元化链条式化学基础人才培养体系的研究与实践

Supramolecular chemistry: a molecularly functional world built by the noncovalent code

Wenying Shi, Xianggui Kong, Hong Yan   

  1. College of Chemistry, Beijing University of Chemical Technology, Beijing 100029, China
  • Received:2025-06-13 Accepted:2025-10-09 Published:2026-06-27
  • Contact: Xianggui Kong, Hong Yan E-mail:kongxg@buct.edu.cn;yanhong@mail.buct.edu.cn

摘要: 超分子化学研究多个分子或离子借助非共价相互作用自发组装成具有特定功能的复杂体系。这一前沿领域通过分子间温柔协作颠覆传统认知:无需强力化学键束缚,氢键、金属配位、疏水作用、π-π堆积、静电作用等弱作用力如同分子社交密码,驱动分子自发组建具有识别、催化、响应等智能功能的超分子体系。本文采用拟人化科普方式,系统阐述有机、无机及杂化三大类超分子的结构特性与功能机制:从环糊精的分子包载、DNA折纸的精准构筑到金属有机框架(MOFs)的选择性吸附,展现非共价相互作用的协同魅力。通过设计水滑石与发光分子的课堂实验,直观演示超分子自组装过程和发光增强效应,并结合环境治理、工业催化、生物医学等应用实例,帮助读者深入理解超分子化学的科学内涵,感受从微观分子协作到宏观功能实现的创新思维。

关键词: 科普, 超分子, 非共价作用, 有机-无机杂化

Abstract: Supramolecular chemistry investigates the spontaneous assembly of molecules or ions into functional complex systems through noncovalent interactions. This frontier field challenges conventional paradigms by demonstrating how delicate intermolecular cooperation—mediated by hydrogen bonding, metal coordination, hydrophobic effects, π-π stacking, and electrostatic interactions—serves as molecular recognition codes that guide the self-assembly of intelligent supramolecular systems capable of molecular recognition, catalysis, and stimuli-responsiveness. Employing an anthropomorphic narrative, this work systematically elucidates the structural characteristics and functional mechanisms of three major supramolecular categories: from cyclodextrin encapsulation and DNA origami construction to metal-organic frameworks (MOFs)-based selective adsorption, showcasing the synergistic potential of noncovalent interactions. Through designed classroom experiments involving hydrotalcite-luminescent molecule systems, we visually demonstrate supramolecular self-assembly processes and emission enhancement effects. Practical applications in environmental remediation, industrial catalysis, and biomedicine further illustrate how molecular-level cooperation translates into macroscopic functionality, providing readers with profound insights into supramolecular chemistry’s scientific essence and innovative methodologies.

Key words: Popularization of science, Supramolecule, Non-covalent interactions, Organic-inorganic hybrid