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首页> 外文期刊>Angewandte Chemie >Chemical Conversion and Locking of the Imine Linkage: Enhancing the Functionality of Covalent Organic Frameworks
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Chemical Conversion and Locking of the Imine Linkage: Enhancing the Functionality of Covalent Organic Frameworks

机译:亚胺连杆的化学转化和锁定:增强共价有机框架的功能

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摘要

Imine-based covalent organic frameworks (COFs) are a widely studied class of functional, crystalline, and porous nanostructures which combine a relatively facile crystallization with tuneable compositions and porosities. However, the imine linkage constitutes an intrinsic limitation due to its reduced stability in harsh chemical conditions and its unsuitability for in-plane pi-conjugation in COFs. Urgent solutions are therefore required in order to exploit the full potential of these materials, thereby enabling their technological application in electronics, sensing, and energy storage devices. In this context, the advent of a new generation of linkages derived from the chemical conversion and locking of the imine bond represents a cornerstone for the synthesis of new COFs. A marked increase in the framework robustness is in fact often combined with the incorporation of novel functionalities including, for some of these reactions, an extension of the in-plane pi-conjugation. This Minireview describes the most enlightening examples of one-pot reactions and post-synthetic modifications towards the chemical locking of the imine bond in COFs.
机译:基于亚胺的共价有机框架(COF)是一类广泛研究的功能性、结晶性和多孔性纳米结构,它将相对容易的结晶与可调节的成分和孔隙率相结合。然而,由于亚胺键在苛刻的化学条件下稳定性降低,并且不适合在COFs中进行平面内pi共轭,因此它构成了一个固有的限制。因此,迫切需要解决方案来充分利用这些材料的潜力,从而使其能够在电子、传感和储能设备中得到技术应用。在这种情况下,由亚胺键的化学转化和锁定衍生的新一代键的出现代表了合成新COF的基石。事实上,框架稳健性的显著提高通常与新功能的加入相结合,包括对于其中一些反应,平面内pi共轭的延伸。这篇小评论描述了一锅反应和对COFs中亚胺键化学锁定的合成后修饰的最具启发性的例子。

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