化学学报 ›› 2023, Vol. 81 ›› Issue (7): 717-724.DOI: 10.6023/A23040134 上一篇    下一篇

研究论文

共价有机框架COF66/COF366的电子结构: 从单体到二维平面聚合物

梁雪峰, 荆剑, 冯昕, 赵勇泽, 唐新员, 何燕, 张立胜, 李慧芳*()   

  1. 青岛科技大学机电工程学院 山东省高性能碳材料制备及应用工程实验室 青岛 266061
  • 投稿日期:2023-04-13 发布日期:2023-06-05
  • 基金资助:
    国家自然科学基金(51676103); 国家自然科学基金(21403037); 山东省泰山学者项目(ts20190937); 及山东省自然科学基金面上项目(ZR2020MB045)

Electronic Structure of Covalent Organic Frameworks COF66 and COF366: from Monomers to Two-Dimensional Framework

Xuefeng Liang, Jian Jing, Xin Feng, Yongze Zhao, Xinyuan Tang, Yan He, Lisheng Zhang, Huifang Li()   

  1. Shandong Engineering Laboratory for Preparation and Application of High-performance Carbon-Materials, College of Electromechanical Engineering, Qingdao University of Science & Technology, Qingdao 266061
  • Received:2023-04-13 Published:2023-06-05
  • Contact: *E-mail: huifang0801@gmail.com
  • Supported by:
    National Natural Science Foundation of China(51676103); National Natural Science Foundation of China(21403037); Shandong Province Taishan Scholars Program(ts20190937); Natural Science Foundation of Shandong Province(ZR2020MB045)

二维共价有机骨架(COFs)是由有机小分子结构单元通过共价键连接形成的一类新型的、具有周期性多孔网络框架结构的结晶性聚合物, 在未来的光电功能材料领域有着优异的应用前景. 因此, 研究COFs结构与性质之间的内在关系, 并以此反馈分子设计, 将对此类光电功能材料的发展有着至关重要的意义. 以共价有机框架66 (COF66)和共价有机框架366 (COF366)为例, 分析了有机构建单元、COFs片段分子和周期性二维平面聚合物前线轨道能级/分布以及电子性质, 阐述了有机构建单元与COFs电子结构之间的内在关系. 计算结果表明, 有机构建单元小分子的几何构型会影响其二维周期性平面聚合物的结构. 另外, 有机构建单元自身的前线轨道能级的相对位置会直接影响到COFs片段分子前线轨道的能级和分布, 也决定了片段分子的电离势和电子亲和能. COFs周期性结构的电子性质与片段分子相似. 因此, 有机构建单元的前线轨道能级以及匹配情况决定了COFs周期性结构的电子性质. 除此之外, 中心分子和连接分子之间的共轭相互作用越大, 电子耦合作用也相应较大, 价带顶和导带底则会相对比较分散, 会更有助于载流子在二维平面结构内的迁移.

关键词: 有机构建单元, 二维共价有机骨架, 电子结构, 密度泛函理论

Two-dimensional covalent organic frameworks (COFs) are an emerging important class of porous materials with periodically ordered structures consisting of core and linker units held together by strong covalent bonds. Their well-designed architecture, tunable functional properties and good thermal stabilities provide great potential for applications in photoenergy conversion and semiconductors. For the aim to explore the relationship between the structure and properties of COFs, which should be very useful for the design of new type of such attractive photo functional materials, the energy character of organic building units, fragment molecules and periodic two-dimensional planar structures are analyzed for COF66 and COF366. The results show that the structure of periodic planar frameworks will be influenced by the geometry of organic building units. Moreover, the relative energy level of the frontier orbitals of the organic building blocks will affect the ionization potential and electron affinity. And the electronic properties of the COFs are also in the same case. Therefore, the electronic property of organic building units is a key factor for determining the electronic structure of periodic structure of COFs. In addition, the electronic coupling of COFs will be larger if the conjugation of the organic building blocks is better. Then, the valence band maximum and conduction band minimum will be more dispersive, and the charge carrier mobility will get larger.

Key words: organic units available, two-dimensional covalent organic framework, electronic structure, density functional theory