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COOPERATIVE ORGANIZATION OF INORGANIC-SURFACTANT AND BIOMIMETIC ASSEMBLIES

机译:无机表面活性剂和生物仿制药的合作组织

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摘要

A model that makes use of the cooperative organization of inorganic and organic molecular species into three dimensionally structured arrays is generalized for the synthesis of nanocomposite materials. In this model, the properties and structure of a system are determined by dynamic interplay among ion-pair inorganic and organic species, so that different phases can be readily obtained through small variations of controllable synthesis parameters, including mixture composition and temperature. Nucleation, growth, and phase transitions may be directed by the charge density, coordination, and steric requirements of the inorganic and organic species at the interface and not necessarily by a preformed structure. A specific example is presented in which organic molecules in the presence of multiply charged silicate oligomers self-assemble into silicatropic liquid crystals. The organization of these silicate-surfactant mesophases is investigated with and without interfacial silicate condensation to separate the effects of self-assembly from the kinetics of silicate polymerization.
机译:将利用无机和有机分子物种的协同组织成三维结构的阵列的模型推广用于纳米复合材料的合成。在该模型中,系统的性质和结构是由离子对无机和有机物质之间的动态相互作用决定的,因此可以通过可控的合成参数(包括混合物组成和温度)的微小变化轻松获得不同的相。成核,生长和相变可以由界面处的无机和有机物质的电荷密度,配位和空间要求来控制,而不必由预先形成的结构来控制。给出了一个具体的例子,其中在带多个电荷的硅酸盐低聚物的存在下,有机分子自组装成嗜硅液晶。在有和没有界面硅酸盐缩合的情况下,研究了这些硅酸盐-表面活性剂中间相的组织,以将自组装效应与硅酸盐聚合动力学分开。

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