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Organized Assembly and Morphologies of Aromatic Schiff Base Compounds in Organized Molecular Films

机译:有组织分子薄膜中芳香族席夫碱化合物的组织组装和形态

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A novel aromatic Schiff base ligand has been designed and its interfacial phase behavior as well as the in situ coordination with Cu(II) ion was investigated. A series of measurement methods, such as surface pressure-area isotherms and atomic force microscopy measurement, have been used to characterize the deposited monolayer and multilayer films. It has been found that both the ligand and the corresponding complex formed stable monolayer or multilayer films at the air/water interface, which could be subsequently transferred onto solid substrates to construct Langmuir-Blodgett films. It was interesting to note that there existed a novel phase transition when the ligand was spread on pure water surface. During this phase transition, the two dimensional flat film changed into a three dimensional fiber-like nano-architectures. However, upon coordinating with Cu(II) ions, only flat films were obtained. Such distinct difference was suggested to be mainly due to the change of molecular conformation and/or the hydrophobicity in the process of supramolecular assembly at the air/water interface.
机译:一种新颖的芳族席夫碱配体的设计和其界面相行为以及与铜原位协调(II)离子进行了研究。一系列的测量方法,例如表面压力区域等温线和原子力显微镜测量,已被用于表征沉积单层和多层膜。已经发现,无论是配体,并在空气/水界面上相应的复形成稳定单层或多层薄膜,其可随后被转移到固体基底上,构建朗缪尔 - 布罗杰特膜。这是有趣的是,存在着一种新型的相变时配体是纯粹的水面展开。在该相变中,二维平膜改变成三维纤维状纳米结构。然而,在与铜(II)离子配位,只能得到平坦的薄膜。这种显着差异有人建议主要是由于分子构象和/或在空气/水界面的超分子组装体的过程中,疏水性的变化。

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