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首页> 外文期刊>Angewandte Chemie >Superstructures of Functional Colloids: Chemistry on the Nanometer Scale
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Superstructures of Functional Colloids: Chemistry on the Nanometer Scale

机译:功能胶体的上层建筑:纳米化学。

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摘要

Chemistry is classically concerned with the connection of atoms and molecules into new functional units. The rules of connection are yet to be extended to the generation and connection of larger objects, whose dimensions are measured in nanometers. However, linking objects of this size through molecules approaching each other randomly is inefficient, instead the principle of self-assembly is decisive, in which lyotropic structure formation or amphiphilic interaction play a significant role. As a result of the nature of the energetic driving forces, the objects generated in this way are often well-defined aggregate structures or highly symmetric volume phases. In contrast to "molecular chemistry", the linking of larger objects also disregards the inherent borders of classical fields of chemistry: for example, the nanoscale association of inorganic colloids with polymers affords hybrid materials that combine the physical properties of both partners: In such a way, catalytic, optical, and electronic features of inorganic colloids might be combined with the mechanical characteristics of polymers such as film formation, elasticity, and melt processi-bility.
机译:传统上,化学与原子和分子与新功能单元的连接有关。连接规则尚未扩展到较大物体的生成和连接,较大物体的尺寸以纳米为单位。然而,通过随机接近的分子将这种大小的物体连接起来是无效的,相反,自组装的原理是决定性的,其中溶致结构的形成或两亲相互作用起着重要的作用。由于能量驱动力的性质,以这种方式产生的物体通常是轮廓分明的聚集体结构或高度对称的体积相。与“分子化学”相反,较大物体的连接也无视经典化学领域的固有边界:例如,无机胶体与聚合物的纳米级缔合提供了混合了两种分子的物理性质的杂化材料:通过这种方式,无机胶体的催化,光学和电子特性可以与聚合物的机械特性相结合,例如成膜,弹性和熔融加工性。

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