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结合氢键作用和金属配位作用以调控多组分组装体中的拓扑化学[2 + 2]环加成反应。

Combining hydrogen bonding and metal coordination for controlling topochemical [2 + 2] cycloaddition from multi-component assemblies.

作者信息

Briceño Alexander, Hill Yennifer, González Teresa, de Delgado Graciela Díaz

机构信息

Instituto Venezolano de Investigaciones Científicas (IVIC), Apartado 21827, Caracas, 1020-A, Venezuela.

出版信息

Dalton Trans. 2009 Mar 7(9):1602-10. doi: 10.1039/b815149k. Epub 2009 Jan 16.

Abstract

The crystal engineering of hydrogen bonded metal assemblies based on stilbene-type compounds is exploited in order to drive [2 + 2] cycloaddition in the solid state. Harmonization of hydrogen bonding and metal coordination is shown as an alternative supramolecular approach for the rational design of novel supramolecular photoreactive networks. This approach was extended to prepare five compounds based on Mn/trans-1,2'-(4-pyridyl)ethylene (4,4'-bpe). The structure-templating features of such arrangements are discussed in terms of their encoded self-complementary stereochemical information (persistence of O-H...N hydrogen bonds and the presence of multiple short contacts between double bonds of the 4,4'-bpe molecules). In this work, the tolerance of this approach to diverse structural factors such as number of hydrogen bonding sites on the metal centre, nature of the counterion and coordinating solvent is shown. All the arrays 1-5 are photoreactive in the solid state upon UV-irradiation leading to the regioselective synthesis of rctt-tetrakis(4-pyridyl)cyclobutane isomer (rctt-4,4'-tpcb) in high to moderate yield. An unprecedented example of supramolecular isomers (2 and 4) with similar solid state reactivity is also reported. In addition, the compound 5 exhibits unexpected formation of the rctt-4,4'-tpcb isomer in the solid state, then a structural change induced by the desolvation of the material.

摘要

基于芪类化合物的氢键金属组装体的晶体工程被用于驱动固态下的[2 + 2]环加成反应。氢键作用与金属配位的协同作用被证明是一种合理设计新型超分子光反应网络的超分子方法。该方法被扩展用于制备基于Mn/反式-1,2'-(4-吡啶基)乙烯(4,4'-bpe)的五种化合物。从其编码的自互补立体化学信息(O-H...N氢键的持久性以及4,4'-bpe分子双键之间多个短接触的存在)方面讨论了这种排列的结构模板特征。在这项工作中,展示了该方法对多种结构因素的耐受性,如金属中心上氢键位点的数量、抗衡离子的性质和配位溶剂。所有阵列1-5在紫外光照射下在固态下具有光反应性,导致以高到中等产率区域选择性合成rctt-四(4-吡啶基)环丁烷异构体(rctt-4,4'-tpcb)。还报道了具有相似固态反应性的超分子异构体(2和4)的一个前所未有的例子。此外,化合物5在固态下表现出意外形成rctt-4,4'-tpcb异构体,随后是材料去溶剂化引起的结构变化。

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