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Coordination templated 2+2+2 cyclotrimerization in a porous coordination framework

机译:多孔配位框架中的配位模板化2 + 2 + 2环三聚

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摘要

Controlling chemical reactions by the supramolecular confinement effects of nanopores has attracted great attention. Here we show that open metal sites in porous coordination frameworks can constitute more powerful and strict templates for precision syntheses. A Fe(III) dicarboxylate framework functionalized with triangularly arranged metal sites is used to accomplish [2+2+2] cyclotrimerization reactions for organonitrile, alkyne and alkene monomers bearing a geometrically suitable pyridyl group. In situ single-crystal X-ray diffraction facilitates the direct observation of such a coordination templated reaction, before cylcotrimerization, the monomer coordinates at the Fe(III) centre by its pyridyl donor, which forces three unsaturated groups to gather around a position very similar with that of the desired covalent cyclic trimer. After the reaction, the trimers serve as tripodal ligands to perfectly fix the Fe(III) ions and the whole crystal to generate an exceptionally rigid and porous material with large surface area coupled with guest-proof zero thermal expansion.
机译:通过纳米孔的超分子限制作用来控制化学反应引起了极大的关注。在这里,我们证明了多孔配位框架中的开放金属位点可以构成更强大,更严格的精确合成模板。使用带有三角形排列的金属位点官能化的Fe(III)二羧酸骨架,可完成带有几何合适吡啶基的有机腈,炔烃和烯烃单体的[2 + 2 + 2]环三聚反应。原位单晶X射线衍射有助于直接观察这种配位模板化反应,在共三聚之前,单体通过其吡啶基供体在Fe(III)中心配位,这迫使三个不饱和基团聚集在非常相似的位置附近与所需的共价环状三聚体的反应后,三聚体用作三脚架配体,可以完美地固定Fe(III)离子和整个晶体,从而生成具有大表面积的异常刚性且多孔的材料,并具有防宾客零热膨胀特性。

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