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分子形状的光控:糖基偶氮苯大环化合物的合成与光化学评估

Photocontrol over Molecular Shape: Synthesis and Photochemical Evaluation of Glycoazobenzene Macrocycles.

作者信息

Despras Guillaume, Hain Julia, Jaeschke Sven Ole

机构信息

Otto Diels Institute of Organic Chemistry, Christiana Albertina University of Kiel, Otto-Hahn-Platz 3/4, 24118, Kiel, Germany.

出版信息

Chemistry. 2017 Aug 10;23(45):10838-10847. doi: 10.1002/chem.201701232. Epub 2017 Jul 24.

Abstract

Reversible shape switching due to external stimuli is an attractive property for the control of molecular features. Hence, we aimed at macrocycles to investigate photoswitching of molecular shape. We prepared the first carbohydrate-based macrocycles comprising a photoresponsive azobenzene hinge. These macrocycles were readily obtained by cyclization of isothiocyanate-armed bis-azobenzene glycosides with piperazine. The unprotected macrocycles exhibit favorable photochromic properties in water and DMSO. Notably, the efficient trans→cis isomerization results in a remarkable shape transformation of the molecule. Additionally, the structure is characterized by restricted conformational freedom of the backbone, resulting in a single main conformer in each geometrical state (trans or cis). Measurement of optical rotation values and circular dichroism spectra revealed a tremendous change in chirality upon photoisomerization, with a strong helical induction in the cis state. These findings highlight the applicability of the new macrocycles as chiroptical molecular switches.

摘要

由于外部刺激引起的可逆形状切换是控制分子特征的一个有吸引力的特性。因此,我们针对大环化合物来研究分子形状的光开关特性。我们制备了首个包含光响应性偶氮苯铰链的基于碳水化合物的大环化合物。这些大环化合物可通过异硫氰酸酯官能化的双偶氮苯糖苷与哌嗪环化轻松获得。未保护的大环化合物在水和二甲基亚砜中表现出良好的光致变色特性。值得注意的是,高效的反式→顺式异构化导致分子发生显著的形状转变。此外,该结构的特点是主链的构象自由度受限,在每种几何状态(反式或顺式)下都只有一种主要构象体。旋光值和圆二色光谱的测量结果表明,光异构化时手性发生了巨大变化,顺式状态下有强烈的螺旋诱导。这些发现突出了新型大环化合物作为手性光学分子开关的适用性。

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