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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >The investigation of the dipole-dipole action direction and molecular space configuration effect during the dipole-dipole induced azobenzene supramolecular self-assembly
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The investigation of the dipole-dipole action direction and molecular space configuration effect during the dipole-dipole induced azobenzene supramolecular self-assembly

机译:偶极 - 偶极子诱导偶氮苯并偶聚力自组装期间偶极偶极作用方向及分子空间构型效应的研究

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摘要

In order to study the effect of dipole-dipole action direction and molecular space configuration on supramolecular self-assembly of azobenzene, three azobenzene dye molecules N1 (" linear "), N2 (" L ") and N3 (" U ") were designed. First, the feasibility of molecular design is verified by theoretical calculations and then synthesized by experiments. By adjusting the direction of the molecular dipole moment and the spatial configuration of the molecule, the three dye molecules self-assemble to form supramolecular self-assemblers with different structures. The properties of three azobenzene dye molecules were studied by IR, NMR, X-ray diffraction and UV-vis spectra. Theoretical calculation and experimental results show that the direction of dipole dipole interaction and molecular space configuration have important effects on the supramolecular self-assembly morphology of azobenzene.
机译:为了研究偶极 - 偶极作用方向和分子空间构型对偶氮苯的超分子自组装的影响,设计了三个偶氮苯染料分子N1(“线性”),N2(“L”)和N3(“U”) 。 首先,通过理论计算验证分子设计的可行性,然后通过实验合成。 通过调节分子偶极力矩和分子的空间构型的方向,三种染料分子自组装以形成具有不同结构的超分子自组装。 通过IR,NMR,X射线衍射和UV-Vis光谱研究了三个偶氮苯染料分子的性质。 理论计算和实验结果表明,偶极子偶极相互作用和分子空间构造的方向对偶氮苯的超分子自组装形态具有重要作用。

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