首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Microfluidic-based Synthesis of Covalent Organic Frameworks (COFs): A Tool for Continuous Production of COF Fibers and Direct Printing on a Surface
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Microfluidic-based Synthesis of Covalent Organic Frameworks (COFs): A Tool for Continuous Production of COF Fibers and Direct Printing on a Surface

机译:基于微流体的共价有机骨架(COF)合成:连续生产COF纤维并在表面直接印刷的工具

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摘要

Covalent Organic Frameworks (COFs) are a class of porous covalent materials which are frequently synthesized as unprocessable crystalline powders. The first COF was reported in 2005 with much effort centered on the establishment of new synthetic routes for its preparation. To date, most available synthetic methods for COF synthesis are based on bulk mixing under solvothermal conditions. Therefore, there is increasing interest in developing systematic protocols for COF synthesis that provide for fine control over reaction conditions and improve COF processability on surfaces, which is essential for their use in practical applications. Herein, we present a novel microfluidic-based method for COF synthesis where the reaction between two constituent building blocks, 1,3,5-benzenetricarbaldehyde (BTCA) and 1,3,5-tris(4-aminophenyl)benzene (TAPB), takes place under controlled diffusion conditions and at room temperature. Using such an approach yields sponge-like, crystalline fibers of a COF material, hereafter called MF-COF. The mechanical properties of MF-COF and the dynamic nature of the approach allow the continuous production of MF-COF fibers and their direct printing onto surfaces. The general method opens new potential applications requiring advanced printing of 2D or 3D COF structures on flexible or rigid surfaces.
机译:共价有机骨架(COF)是一类多孔的共价材料,通常被合成为不可加工的结晶粉末。据报道,第一个COF于2005年投入了很多精力,重点是建立新的合成路线进行制备。迄今为止,用于COF合成的大多数可用合成方法都是基于溶剂热条件下的本体混合。因此,对开发用于COF合成的系统规程的兴趣日益增加,该规程可对反应条件进行精细控制并改善表面上的COF可加工性,这对于它们在实际应用中的使用至关重要。在这里,我们介绍了一种新颖的基于微流体的COF合成方法,其中两个组成构件之间的反应是1,3,5-苯三甲醛(BTCA)和1,3,5-三(4-氨基苯基)苯(TAPB),发生在受控的扩散条件和室温下。使用这种方法可产生一种COF材料的海绵状结晶纤维,以下称为MF-COF。 MF-COF的机械性能和方法的动态性质允许连续生产MF-COF纤维并将其直接印刷在表面上。通用方法开辟了新的潜在应用,需要在柔性或刚性表面上进行2D或3D COF结构的高级印刷。

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