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An azobenzene container showing a definite folding – synthesis and structural investigation

机译:偶氮苯容器显示出一定的折叠性–合成与结构研究

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摘要

The combination of photo-switchable units with macrocycles is a very interesting field in supramolecular chemistry. Here, we present the synthesis of a foldable container consisting of two different types of Lissoclinum macrocyclic peptides which are connected via two azobenzene units. The container is controllable by light: irradiation with UV light causes a switching process to the compact cis,cis-isomer, whereas by the use of visible light the stretched trans,trans-isomer is formed. By means of quantum chemical calculations and CD spectroscopy we could show that the trans→cis isomerization is spatially directed; that means that one of the two different macrocycles performs a definite clockwise rotation to the other, caused by irradiation with UV light. For the cis→trans isomerization counterclockwise rotations are found. Furthermore, quantum chemical calculations reveal that the energy of the cis,cis-isomer is only slightly higher than the energy of the cis,trans-isomer. This effect can be explained by the high dispersion energy in the compact cis,cis-isomer.
机译:光开关单元与大环的结合是超分子化学中非常有趣的领域。在这里,我们介绍由两个不同类型的Lissoclinum大环肽经两个偶氮苯单元连接的可折叠容器的合成。容器是可通过光控制的:用紫外线照射会引起向致密顺式,顺式异构体的转换过程,而通过使用可见光可以形成拉伸的反式,反式异构体。通过量子化学计算和CD光谱,我们可以证明反式→顺式异构化是空间定向的。这意味着两个不同的大循环中的一个由于受到紫外线的照射而向另一个方向进行了确定的顺时针旋转。对于顺式→反式异构化,发现逆时针旋转。此外,量子化学计算表明,顺式,顺式异构体的能量仅略高于顺式,反式异构体的能量。该效应可以通过致密的顺式,顺式异构体中的高分散能来解释。

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