首页> 外文期刊>Journal of the American Chemical Society >Electronic Decoupling in C_3-Symmetrical Light-Responsive Tris(Azobenzene) Scaffolds: Self-Assembly and Multiphotochromism
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Electronic Decoupling in C_3-Symmetrical Light-Responsive Tris(Azobenzene) Scaffolds: Self-Assembly and Multiphotochromism

机译:C_3对称光响应性三(偶氮苯)支架中的电子解耦:自组装和多光致变色。

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摘要

We report the synthesis of a novel C-3-symmetrical multiphotochromic molecule bearing three azobenzene units at positions 1, 3, 5 of the central phenyl ring. The unique geometrical design of such a rigid scaffold enables the electronic decoupling of the azobenzene moieties to guarantee their simultaneous isomerization. Photoswitching of all azobenzenes in solution was demonstrated by means of UV-vis absorption spectroscopy and high performance liquid chromatography (HPLC) analysis. Scanning tunneling microscopy investigations at the solid-liquid interface, corroborated by molecular modeling, made it possible to unravel the dynamic self-assembly of such systems into ordered supramolecular architectures, by visualizing and identifying the patterns resulting from three different isomers, thereby demonstrating that the multiphotochromism is retained when the molecules are confined in two dimensions.
机译:我们报告了在中央苯环的位置1、3、5上带有三个偶氮苯单元的新型C-3对称多光致变色分子的合成。这种刚性支架的独特的几何设计使得偶氮苯部分的电子去偶联能够确保它们同时异构化。通过紫外可见吸收光谱和高效液相色谱(HPLC)分析证明了溶液中所有偶氮苯的光开关。在固-液界面上进行的扫描隧道显微镜研究得到分子建模的证实,通过可视化和识别由三种不同异构体产生的模式,可以将此类系统的动态自组装分解为有序的超分子体系。当分子被限制在二维时,多光致变色被保留。

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