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Rapid Synthesis of High Surface Area Imine-Linked 2D Covalent Organic Frameworks by Avoiding Pore Collapse During Isolation

机译:通过避免分离过程中的孔隙塌陷来快速合成高表面积的亚胺连接的二维共价有机骨架

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摘要

Imine-linked 2D covalent organic frameworks (COFs) form more rapidly than previously reported under Bronsted acid-catalyzed conditions, showing signs of crystallinity within a few minutes, and maximum crystallinity within hours. These observations contrast with the multiday reaction times typically employed under these conditions. In addition, vacuum activation, which is often used to isolate COF materials significantly erodes the crystallinity and surface area of the several isolated materials, as measured by N-2 sorption and X-ray diffraction. This loss of material quality during isolation for many networks has historically obscured otherwise effective polymerization conditions. The influence of the activation procedure is characterized in detail for three COFs, with the commonly used 1,3,5-tris(4-aminophenyl)benzene-terephthaldehyde network (TAPB-PDA COF), the most prone to pore collapse. When the networks are activated carefully, rapid COF formation is general for all five of the imine-linked 2D COFs studied, with all exhibiting excellent crystallinity and surface areas, including the highest surface areas reported to date for three materials. Furthermore, to simplify the workup of COF materials, a simple nitrogen flow method provides high-quality materials without the need for specialized equipment. These insights have important implications for studying and understanding how 2D COFs form.
机译:在布朗斯台德酸催化的条件下,与亚胺连接的2D共价有机骨架(COF)的形成速度比以前报道的要快,在几分钟内显示出结晶迹象,而在数小时内显示出最大结晶度。这些观察结果与在这些条件下通常采用的多日反应时间形成对比。另外,常用于分离COF材料的真空活化会严重腐蚀几种分离的材料的结晶度和表面积,如N-2吸附和X射线衍射所测。历史上,许多网络在隔离过程中这种材料质量的损失掩盖了有效的聚合条件。活化过程的影响针对三种COF进行了详细表征,其中最常用的1,3,5-三(4-氨基苯基)苯-对甲醛醛网络(TAPB-PDA COF)最容易发生孔塌陷。当仔细激活网络时,对所有5个与亚胺连接的2D COF都将快速形成COF,它们均具有出色的结晶度和表面积,包括迄今为止报道的三种材料的最高表面积。此外,为简化COF材料的后处理,一种简单的氮气流方法无需专用设备即可提供高质量的材料。这些见解对于研究和理解二维COF的形成方式具有重要意义。

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