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二维共价自组装:将共价有机框架纳米球连接成晶体和多孔薄膜。

Covalent Self-Assembly in Two Dimensions: Connecting Covalent Organic Framework Nanospheres into Crystalline and Porous Thin Films.

作者信息

Sasmal Himadri Sekhar, Halder Arjun, Kunjattu H Shebeeb, Dey Kaushik, Nadol Athulya, Ajithkumar Thalasseril G, Ravindra Bedadur Prachiti, Banerjee Rahul

机构信息

Department of Chemical Sciences , Indian Institute of Science Education and Research (IISER) Kolkata , Mohanpur 741246 , India.

Central NMR Facility and Physical/Materials Chemistry Division , CSIR-National Chemical Laboratory , Dr. Homi Bhabha Road , Pune 411008 , India.

出版信息

J Am Chem Soc. 2019 Dec 26;141(51):20371-20379. doi: 10.1021/jacs.9b10788. Epub 2019 Dec 11.

Abstract

Insolubility of covalent organic frameworks (COFs) in organic solvents is one of the major obstacles for the potential application of these extended networks such as drug delivery, sensing, optoelectronics, and semiconductor device fabrication. The present work proposes a unique way to make uniform, solution-processable, crystalline, and porous COF nanospheres directly from the homogeneous solution of amine and aldehyde via spatial and temporal control of the nucleation and growth. This strategy of direct nucleation simultaneously showcases the caliber to tune the size of the COF nanospheres from 25 to 570 nm. We have also demonstrated the concept of mesoscale covalent self-assembly of those solution-processable COF nanospheres in the liquid-liquid interface (DCM-water bilayer) for the very first time, transmuting them into self-standing COF thin films with long-range ordered arrangements in two dimensions. The crystalline and porous (with TpAzo showing highest of 1932 m g) free-standing COF thin films could be fabricated in a wide range of thicknesses from as low as 21 nm to as high as 630 nm. Both β-ketoenamine (TpAzo, TpDPP) and imine (TpOMeAzo, TpOMeDPP) linked COF thin films have been synthesized via mesoscale covalent self-assembly of the solution-processable COF nanospheres illustrating the generality of this eloquent methodology. Further, the solution processability has been tested and utilized to cast COF thin films uniformly in the inner and outer surface of an alumina hollow fiber membrane. The COF thin film-alumina hollow fiber membrane composites have showcased promising selective molecular separation of He and O, He and CO, and He and N.

摘要

共价有机框架材料(COFs)在有机溶剂中的不溶性是这些扩展网络在药物递送、传感、光电子学和半导体器件制造等潜在应用中的主要障碍之一。目前的工作提出了一种独特的方法,通过对成核和生长的空间和时间控制,直接从胺和醛的均相溶液中制备出均匀、可溶液加工、结晶且多孔的COF纳米球。这种直接成核策略同时展示了将COF纳米球尺寸从25纳米调节到570纳米的能力。我们还首次证明了这些可溶液加工的COF纳米球在液-液界面(二氯甲烷-水双层)中的中尺度共价自组装概念,将它们转变为在二维上具有长程有序排列的自立式COF薄膜。结晶且多孔(TpAzo的比表面积最高可达1932 m²/g)的自立式COF薄膜可以在低至21纳米到高达630纳米的广泛厚度范围内制备。通过可溶液加工的COF纳米球的中尺度共价自组装,合成了β-酮烯胺(TpAzo、TpDPP)和亚胺(TpOMeAzo、TpOMeDPP)连接的COF薄膜,说明了这种巧妙方法的通用性。此外,已经测试了溶液可加工性,并利用它在氧化铝中空纤维膜的内表面和外表面均匀浇铸COF薄膜。COF薄膜-氧化铝中空纤维膜复合材料在He与O、He与CO以及He与N的选择性分子分离方面展现出了良好的前景。

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