Hamley Ian W
Department of Chemistry, University of Reading, Reading RG6 6AD, UK.
Soft Matter. 2022 Jan 26;18(4):711-721. doi: 10.1039/d1sm01758f.
Lamellar structures are formed in a variety of soft materials including lipids, surfactants, block polymers, clays, colloids, semicrystalline polymers and others. Lamellar phases are characterized by scattering patterns containing pseudo-Bragg peaks from the layer ordering. However, fluctuations of the lamellae give rise to diffuse scattering in addition. This diffuse scattering can provide valuable information on the elastic properties of lamellae which control their fluctuations. A number of models to account for this are described in this Tutorial Review, along with examples from the literature. In addition, diffuse scattering from in-plane fluctuations or structures such as perforations or patterned nanoparticles is considered. This type of diffuse scattering can give unique information on the nature of, and positional (and bond orientational) ordering within, correlated structures within the lamellar plane. Anisotropic diffuse scattering features from thermotropic smectic phases is also briefly discussed.
层状结构在多种软材料中形成,包括脂质、表面活性剂、嵌段聚合物、黏土、胶体、半结晶聚合物等。层状相的特征是散射图案包含来自层序排列的伪布拉格峰。然而,薄片的涨落还会产生漫散射。这种漫散射可以提供有关控制其涨落的薄片弹性性质的有价值信息。本教程综述中描述了许多解释这一现象的模型以及文献中的实例。此外,还考虑了来自面内涨落或诸如穿孔或图案化纳米颗粒等结构的漫散射。这种类型的漫散射可以提供有关层状平面内相关结构的性质以及位置(和键取向)有序性的独特信息。还简要讨论了热致近晶相的各向异性漫散射特征。