Shi Xiansong, Ma Dongwei, Xu Fang, Zhang Zhe, Wang Yong
State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University Nanjing 211816 P. R. China
Chem Sci. 2019 Dec 4;11(4):989-996. doi: 10.1039/c9sc05082e.
Two-dimensional covalent organic frameworks (COFs) are gaining tremendous interest for their potential applications in a diversity of fields. However, synthesis of COF nanosheets (CONs) usually suffers from tedious exfoliation processes and low yields. Herein, we present an exfoliation-free and scalable strategy to prepare few-layered CONs based on interface-confined synthesis, in which cheap and recyclable table salt (NaCl) is used as the sacrificial substrate. Salt particles are introduced into the reaction system, creating billions of solid-liquid interfaces. Oligomers formed upon the reaction between monomers are immediately adsorbed on salt surfaces, and the following polymerization leading to crystalline CONs is exclusively confined to salt surfaces. Salts can be easily removed by water washing, producing CONs with the thickness down to a few nanometers and lateral sizes up to hundreds of micrometers depending on the size of salt particles and the concentration of monomers. Four different kinds of CONs, both imine-linked and boron-containing, are synthesized from this generic method. As a demonstration, we prepare highly permeable and selective membranes using resultant CONs as building blocks. Thanks to the defect-free stacking of CONs with thin thicknesses and large lateral sizes on porous substrates, the membranes precisely separate similarly sized dyes while allowing ultrafast water permeation. This interface-confined strategy opens a new platform for the controllable and scalable synthesis of COF nanosheets and is essential for the burgeoning real-world applications of COFs in various fields.
二维共价有机框架(COF)因其在众多领域的潜在应用而备受关注。然而,COF纳米片(CON)的合成通常存在繁琐的剥离过程且产率较低。在此,我们提出一种基于界面受限合成的无剥离且可扩展的策略来制备少层CON,其中使用廉价且可回收的食盐(NaCl)作为牺牲底物。将盐颗粒引入反应体系,形成数十亿个固液界面。单体之间反应形成的低聚物立即吸附在盐表面,随后导致结晶CON的聚合过程仅局限于盐表面。通过水洗可轻松去除盐分,根据盐颗粒大小和单体浓度,可制备出厚度低至几纳米、横向尺寸高达数百微米的CON。利用这种通用方法合成了四种不同类型的CON,包括亚胺连接型和含硼型。作为演示,我们使用所得的CON作为构建单元制备了高渗透性和选择性的膜。由于CON在多孔基材上具有无缺陷的堆叠,厚度薄且横向尺寸大,这些膜能够精确分离尺寸相近的染料,同时允许超快速的水渗透。这种界面受限策略为COF纳米片的可控和可扩展合成开辟了一个新平台,并对COF在各个领域中新兴的实际应用至关重要。