Wang Weize, Wang Linxia, Du Fei, Wang Gang-Ding, Hou Lei, Zhu Zhonghua, Liu Bo, Wang Yao-Yu
College of Chemistry & Pharmacy, Northwest A&F University Yangling 712100 P. R. China
Key Laboratory of Synthetic and Natural Functional Molecule of the Ministry of Education, Xi'an Key Laboratory of Functional Supramolecular Structure and Materials, College of Chemistry & Materials Science, Northwest University Xi'an 710127 P. R. China
Chem Sci. 2022 Dec 6;14(3):533-539. doi: 10.1039/d2sc06016g. eCollection 2023 Jan 18.
The utilization of dative B←N bonds for the creation of crystalline organic framework (BNOF) has increasingly received intensive interest; however, the shortage of permanent porosity is an obstacle that must be overcome to guarantee their application as porous materials. Here, we report the first microporous crystalline framework, BNOF-1, that is assembled through sole monomers, which can be scalably synthesized by the cheap 4-pyridine boronic acid. The 2D networks of BNOF-1 were stacked in parallel to generate a highly porous supramolecular open framework, which possessed not only the highest BET surface area of 1345 m g amongst all of the BNOFs but also features a record-high uptake of CH and CO in covalent organic framework (COF) materials to date. Dynamic breakthrough experiments demonstrated that BNOF-1 material can efficiently separate CH/CO mixtures. In addition, the network can be regenerated in organic solvents with no loss in performance, making its solution processable. We believe that BNOF-1 would greatly diversify the reticular chemistry and open new avenues for the application of BNOFs.
利用配位B←N键构建结晶有机骨架(BNOF)越来越受到广泛关注;然而,缺乏永久孔隙率是阻碍其作为多孔材料应用的一个必须克服的障碍。在此,我们报道了首个微孔结晶骨架BNOF-1,它由单一单体组装而成,可通过廉价的4-吡啶硼酸进行可扩展合成。BNOF-1的二维网络平行堆叠形成高度多孔的超分子开放骨架,它不仅在所有BNOF中具有1345 m²/g的最高BET表面积,而且在共价有机骨架(COF)材料中对CH₄和CO₂的吸附量创下了迄今为止的最高纪录。动态突破实验表明,BNOF-1材料能够有效分离CH₄/CO₂混合物。此外,该网络可在有机溶剂中再生且性能无损失,使其具有溶液可加工性。我们相信,BNOF-1将极大地丰富网状化学,并为BNOF的应用开辟新途径。