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Isoreticular two-dimensional covalent organic frameworks synthesized by on-surface condensation of diboronic acids

机译:二硼酸表面缩合合成的等规二维共价有机骨架

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摘要

On-surface self-condensation of 1,4-benzenediboronic acid was previously shown to yield extended surface-supported, long-range-ordered two-dimensional covalent organic frameworks (2D COFs). The most important prerequisite for obtaining high structural quality is that the polycondensation (dehydration) reaction is carried out under slightly reversible reaction conditions, i.e., in the presence of water. Only then can the subtle balance between kinetic and thermodynamic control of the polycondensation be favorably influenced, and defects that are unavoidable during growth can be corrected. In the present study we extend the previously developed straightforward preparation protocol to a variety of para-diboronic acid building blocks with the aim to tune lattice parameters and pore sizes of 2D COFs. Scanning tunneling microscopy is employed for structural characterization of the covalent networks and of noncovalently self-assembled structures that form on the surface prior to the thermally activated polycondensation reaction.
机译:先前已显示1,4-苯二硼酸的表面自缩合可产生扩展的表面支撑的,长距离有序的二维共价有机骨架(2D COF)。获得高结构质量的最重要先决条件是缩聚(脱水)反应是在稍微可逆的反应条件下,即在水的存在下进行的。只有这样,才能很好地影响缩聚反应动力学和热力学控制之间的微妙平衡,并且可以纠正生长过程中不可避免的缺陷。在本研究中,我们将先前开发的简单制备方案扩展到各种对二硼酸构建基块,目的是调整2D COF的晶格参数和孔径。扫描隧道显微镜用于热活化缩聚反应之前在表面形成的共价网络和非共价自组装结构的结构表征。

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