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首页> 外文期刊>Journal of Colloid and Interface Science >Self-assembly and supramolecular liquid crystals based on organic cation encapsulated polyoxometalate hybrid reverse micelles and pyridine derivatives
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Self-assembly and supramolecular liquid crystals based on organic cation encapsulated polyoxometalate hybrid reverse micelles and pyridine derivatives

机译:基于有机阳离子包封的多金属氧酸盐杂化反胶束和吡啶衍生物的自组装和超分子液晶

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The controlled self-assembly of multi-components in one system represents the capability integrating intermolecular interactions and functions of components and is believed the key procedure leading to multifunctional materials finally. In pursuing this goal, we used a double-chain cationic surfactant with a benzoic acid group at the end of one tail to encapsulate Keggin-type polyanion clusters via electrostatic interaction, obtaining uniform supramolecular hybrid reverse micelles, which served as hydrogen-bonding donors. Five pyridine derivatives containing conjugated and non-conjugated groups were chosen as hydrogen-bonding acceptors to bind with reverse micelles. Through mixing with these components according to chemical stoichiometry, the hybrid reverse micelle changed to a new self-assembly precursor through intermolecular hydrogen bonding. The as-prepared reverse micelles bearing conjugated pyridine groups exhibit supramolecular liquid crystal properties, which were characterized by differential scanning calorimetry, polarizing optical microscopy, and X-ray diffraction. The length and number of the alky chain in the pyridine derivatives, as well as the charges of polyoxometalates were also studied with regard to the liquid crystal structure. The synergistic effect of among three components was analyzed, and the liquid crystal properties could be conveniently adjusted through the modification of the hydrogen-bonding acceptor components.
机译:一个系统中多组分的受控自组装代表了整合分子间相互作用和组分功能的能力,并且被认为是最终导致多功能材料的关键过程。为了实现这一目标,我们使用了一条尾部末端带有苯甲酸基团的双链阳离子表面活性剂,通过静电相互作用将Keggin型聚阴离子簇团包裹起来,获得了均匀的超分子杂化反胶束,并作为氢键供体。选择五个含有共轭和非共轭基团的吡啶衍生物作为氢键受体,以与反胶束结合。通过根据化学计量与这些组分混合,杂化反胶束通过分子间氢键键合变成了新的自组装前体。制备的带有共轭吡啶基的反胶束具有超分子液晶性质,其特征在于差示扫描量热法,偏振光学显微镜法和X射线衍射。还就液晶结构研究了吡啶衍生物中烷基链的长度和数量,以及多金属氧酸盐的电荷。分析了这三种成分之间的协同作用,可以通过修饰氢键受体成分方便地调节液晶性能。

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