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路易斯酸催化的二维酞菁共价有机框架的形成。

Lewis acid-catalysed formation of two-dimensional phthalocyanine covalent organic frameworks.

机构信息

Department of Chemistry and Chemical Biology, Cornell University, Baker Laboratory, Ithaca, New York 14853-1301, USA.

出版信息

Nat Chem. 2010 Aug;2(8):672-7. doi: 10.1038/nchem.695. Epub 2010 Jun 20.

Abstract

Covalent organic frameworks (COFs) offer a new strategy for assembling organic semiconductors into robust networks with atomic precision and long-range order. General methods for COF synthesis will allow complex building blocks to be incorporated into these emerging materials. Here we report a new Lewis acid-catalysed protocol to form boronate esters directly from protected catechols and arylboronic acids. This transformation also provides crystalline boronate ester-linked COFs from protected polyfunctional catechols and bis(boronic acids). Using this method, we prepared a new COF that features a square lattice composed of phthalocyanine macrocycles joined by phenylene bis(boronic acid) linkers. The phthalocyanines stack in an eclipsed fashion within the COF to form 2.3 nm pores that run parallel to the stacked chromophores. The material's broad absorbance over the solar spectrum, potential for efficient charge transport through the stacked phthalocyanines, good thermal stability and the modular nature of COF synthesis, show strong promise for applications in organic photovoltaic devices.

摘要

共价有机骨架 (COF) 为将有机半导体组装成具有原子精度和长程有序的坚固网络提供了新策略。COF 合成的一般方法将允许复杂的构建块被纳入这些新兴材料中。在这里,我们报告了一种新的路易斯酸催化方法,可直接从保护的儿茶酚和芳基硼酸形成硼酸酯。这种转化还可以从保护的多功能儿茶酚和双(硼酸)制备硼酸酯键合的 COF。使用这种方法,我们制备了一种新的 COF,其特征在于由苯并二硼酸连接的酞菁大环组成的正方形晶格。酞菁在 COF 内以重叠的方式堆积,形成与堆积的发色团平行的 2.3nm 孔。该材料在太阳光谱范围内具有较宽的吸收,通过堆积的酞菁有效地传输电荷的潜力,良好的热稳定性以及 COF 合成的模块化性质,在有机光伏器件中的应用具有很大的应用前景。

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