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首页> 外文期刊>Beilstein journal of organic chemistry. >London dispersion as important factor for the stabilization of (Z)-azobenzenes in the presence of hydrogen bonding
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London dispersion as important factor for the stabilization of (Z)-azobenzenes in the presence of hydrogen bonding

机译:伦敦分散是在存在氢键的情况下稳定(Z)-偶氮苯的重要因素

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The understanding and control of the light-induced isomerization of azobenzenes as one of the most important classes of molecular switches is crucial for the design of light-responsive materials using this entity. Herein, we present the stabilization of metastable ( Z )-azobenzenes by London dispersion interactions, even in the presence of comparably stronger hydrogen bonds in various solvents. The Z → E isomerization rates of several N -substituted 4,4′-bis(4-aminobenzyl)azobenzenes were measured. An intramolecular stabilization was observed and explained by the interplay of intramolecular amide and carbamate hydrogen bonds as well as London dispersion interactions. Whereas in toluene, 1,4-dioxane and tert -butyl methyl ether the hydrogen bonds dominate, the variation in stabilization of the different substituted azobenzenes in dimethyl sulfoxide can be rationalized by London dispersion interactions. These findings were supported by conformational analysis and DFT computations and reveal low-energy London dispersion forces to be a significant factor, even in the presence of hydrogen bonds.
机译:作为最重要的分子开关类别之一,对偶氮苯的光诱导异构化的理解和控制对于使用该实体设计光响应材料至关重要。在本文中,即使在各种溶剂中存在相对较强的氢键,我们也可以通过伦敦分散相互作用来稳定亚稳(Z)-偶氮苯。测量了几种N-取代的4,4'-双(4-氨基苄基)偶氮苯的Z→E异构化速率。观察到分子内稳定并通过分子内酰胺和氨基甲酸酯氢键的相互作用以及伦敦分散相互作用来解释。在甲苯,1,4-二恶烷和叔丁基甲基醚中,氢键占主导地位,而在伦敦二甲基亚砜中,不同取代的偶氮苯在稳定度方面的变化可以通过伦敦分散相互作用来合理化。这些发现得到了构象分析和DFT计算的支持,并且揭示了即使在存在氢键的情况下,低能伦敦分散力也是一个重要因素。

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