Mateos-Maroto Ana, Abelenda-Núñez Irene, Ortega Francisco, Rubio Ramón G, Guzmán Eduardo
Departamento de Química Física, Facultad de Químicas, Universidad Complutense de Madrid, Ciudad Universitaria, s/n-28040 Madrid, Spain.
Instituto Pluridisciplinar, Universidad Complutense de Madrid, Paseo Juan XXIII, 1-28040 Madrid, Spain.
Polymers (Basel). 2021 Apr 9;13(8):1221. doi: 10.3390/polym13081221.
The Layer-by-Layer (LbL) method is a well-established method for the assembly of nanomaterials with controlled structure and functionality through the alternate deposition onto a template of two mutual interacting molecules, e.g., polyelectrolytes bearing opposite charge. The current development of this methodology has allowed the fabrication of a broad range of systems by assembling different types of molecules onto substrates with different chemical nature, size, or shape, resulting in numerous applications for LbL systems. In particular, the use of soft colloidal nanosurfaces, including nanogels, vesicles, liposomes, micelles, and emulsion droplets as a template for the assembly of LbL materials has undergone a significant growth in recent years due to their potential impact on the design of platforms for the encapsulation and controlled release of active molecules. This review proposes an analysis of some of the current trends on the fabrication of LbL materials using soft colloidal nanosurfaces, including liposomes, emulsion droplets, or even cells, as templates. Furthermore, some fundamental aspects related to deposition methodologies commonly used for fabricating LbL materials on colloidal templates together with the most fundamental physicochemical aspects involved in the assembly of LbL materials will also be discussed.
层层(LbL)方法是一种成熟的方法,用于通过将两个相互作用的分子(例如带相反电荷的聚电解质)交替沉积到模板上来组装具有可控结构和功能的纳米材料。该方法目前的发展使得通过将不同类型的分子组装到具有不同化学性质、尺寸或形状的基底上,制造出了各种各样的系统,从而产生了LbL系统的众多应用。特别是,由于软胶体纳米表面(包括纳米凝胶、囊泡、脂质体、胶束和乳液滴)对活性分子封装和控释平台设计的潜在影响,近年来将其用作LbL材料组装模板的应用有了显著增长。本综述对当前使用软胶体纳米表面(包括脂质体、乳液滴甚至细胞)作为模板制备LbL材料的一些趋势进行了分析。此外,还将讨论与在胶体模板上制备LbL材料常用的沉积方法相关的一些基本方面,以及LbL材料组装过程中涉及的最基本的物理化学方面。