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Photoactive Azobenzene-Containing Supramolecular Complexes and Related Interlocked Molecular Compounds

机译:光活性含偶氮苯的超分子配合物和相关的互锁的分子化合物

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Two acyclic and three macrocyclic polyethers, three [2]catenanes, and one [2]rotaxane, each containing one 4,4'-azobiphenoxy unit, have been synthesized. In solution, the azobenzene-based acyclic polyethers are bound by cyclobis(paraquat-p-phenylene)-a tetracationic cyclophane-in their trans forms only. On irradiation (#lambda#=360 nm)of an equimolar solution of the tetracationic cyclophane host and one of the guests containing a trans-4,4'-azobiphenoxy unit, the trans double bond isomerizes to its cis form and the supramolecular complex dissociates into its molecular components. The trans isomer of the guest and, as a result, the complex are reformed,either by irradiation (#lambda#=440 nm)or by warming the solution in the dark.Variable temperature ~1H NMR spectroscopic investigations of the [2]catenanes and the [2]rotaxane revealed that, in all cases, the 4,4'-azobiphenoxy unit resides preferentially alongside the cavities of their tetracationic cyclophane components, which are occupied either by a 1,4-dioxybenzene or by a 1,5-dioxynaphthalene unit. In the acyclic and macrocyclic polyethers containing 1,4-dioxybenzene or 1,5-dioxynaphthalene chromophoric groups and a 4,4'-azobiphenoxy moiety,the fluorescence of the former units is quenched by the latter.Fluorescence quenching is accompanied by photosensitization of the isomerization. The rate of the energy-transfer process is different for trans and cis isomers. In the [2]rotaxane and the [2]catenanes, the photoisomerization is quenched to an extent that depends on the specific structure of the compound. Only in one of the three [2]catenanes and in the [2]rotaxane was an efficient photoisomerization (#lambda#=360 nm) from the trans to the cis isomer of the 4,4'-azobiphenoxy unit observed. Single crystal X-ray structural analysis of one of the [2]catenanes showed that, in the solid state, the 4,4'-azobiphenoxy unit in the macrocyclic polyether component also resides exclusively alongside. The cavity of the tetracationic cyclophane component of the [2]catenane is filled by a 1,5-dioxynaphthalene unit, and infinite donor-acceptor stacks between adjacent [2]catenanes are formed in the crystal. These supramolecular complexes and their mechanically interlocked molecular counterparts can be regarded as potential photoactive nanoscale devices.
机译:合成了两个无环和三个大环聚醚,三个[2]邻苯二甲基和一个[2]轮烷,每个均包含一个4,4'-偶氮二苯氧基单元。在溶液中,基于偶氮苯的无环聚醚仅以反式形式与环双(百草枯-对亚苯基)-四阳离子环烷结合。在四阳离子环烷主体和一个含有反式-4,4'-偶氮联苯氧基单元的客体的等摩尔溶液的照射(λλ= 360 nm)下,反式双键异构化为顺式,超分子复合物解离转化为其分子成分。客体的反式异构体和络合物通过辐照(λλ= 440 nm)或在黑暗中加热溶液而得到重整。[2]邻苯二酚的温度〜1H NMR光谱研究[2]轮烷表明,在所有情况下,4,4'-偶氮联苯氧基单元均优先位于其四阳离子环庚烷组分的空腔旁,该空腔被1,4-二氧苯或1,5-占据二氧萘单元。在含有1,4-二氧苯或1,5-二氧萘发色基团和4,4'-偶氮联苯氧基的无环和大环聚醚中,前者的荧光被后者淬灭。异构化。反式和顺式异构体的能量转移过程速率不同。在[2]轮烷和[2]儿茶酚中,光异构化被淬灭到取决于化合物的特定结构的程度。仅在三个[2]邻苯二酚之一和[2]轮烷中,可以观察到从4,4'-偶氮二苯氧基单元的反式到顺式异构体的有效光异构化(λλ= 360 nm)。 [2]联苯胺之一的单晶X射线结构分析表明,在固态下,大环聚醚组分中的4,4'-偶氮联苯氧基单元也仅排在旁边。 [2] catenane的四阳离子环庚烷组分的空腔被1,5-二氧萘单元填充,并且在晶体中在相邻的[2] catenanes之间形成了无限的供体-受体堆叠。这些超分子复合物及其机械互锁的分子对应物可被视为潜在的光敏纳米级器件。

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