共价键
材料科学
六方晶系
多孔性
纳米技术
分子
结晶学
翻译(生物学)
化学
定义明确
金属有机骨架
背景(考古学)
工作(物理)
分子筛
仿生材料
超分子化学
网状结缔组织
聚合物
水热合成
作者
Saber Mirzaei,M. Saeed Mirzaei,Mei-Yan Gao,Felipe Gándara,Kaiyu Wang,Francesco Tavani,Heqing Zhu,Davide Μ. Proserpio,Omar M. Yaghi
标识
DOI:10.26434/chemrxiv.15001007/v1
摘要
The expansion of reticular chemistry into increasingly complex architectures relies on the precise translation of molecular geometry into extended crystalline frameworks. Here, we report the design and synthesis of a dodeca-benzaldehyde functionalized nanographene (hexakis[3,5-bis(pformylphenyl)-4,6-dimethoxyphenyl]hexabenzocoronene, HBC-LA12), a molecule that integrates hexagonal and triangular shapes into a dodecatopic hexagonal prismatic geometry. The reticulation of HBC-LA12 with 6-connected triangular prismatic and 4-connected square-planar linkers yields two singlecrystalline three-dimensional imine-linked covalent organic frameworks, termed COF-612 [(HBC-LA12)(HAPT)2]imine and COF-412 [(HBC-LA12)(PyTTA)3]imine. The structure of these frameworks realizes the previously inaccessible (3,6,6)-and (3,4,6)-connected networks in COFs, corresponding to the kez and cez topologies, respectively. These nets represent unprecedented edge-2-transitive architectures derived from the parent (6,12)-connected alb and (4,12)-connected shp nets. Gas-sorption analysis reveals that these frameworks possess permanent porosity with Brunauer-Emmett-Teller surface areas exceeding 5000 m 2 g-1. This work demonstrates the incorporation of nanographenes into threedimensional imine-linked COFs, yielding the highest-connectivity single-crystalline COFs with novel kez and cez underlying nets and the highest porosity reported for COFs to date.
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