Department of Materials and Interfaces, Weizmann Institute of Science, Rehovot 76100, Israel.
Nanotechnology. 2011 Nov 11;22(45):455706. doi: 10.1088/0957-4484/22/45/455706. Epub 2011 Oct 21.
Structural arrangements of nanoplatelets in a polymer matrix play an important role in determining their properties. In the present study, multilayered composite films of poly(vinyl alcohol) (PVA) with Laponite clay are assembled by layer-by-layer (LBL) deposition. The LBL films are found to be hydrated, flexible and transparent. A facile and solvent-free method-by depositing self-assembled monolayers (SMA) of a functional silane on substrates-is demonstrated for preparing free-standing LBL films. Evolution of nanostructures in LBL films is correlated with thermal and mechanical properties. A well-dispersed solvent-cast PVA/Laponite composite film is also studied for comparison. We found that structurally ordered LBL films with an intercalated nanoclay system exhibits tensile strength, modulus and toughness, which are significantly higher than that of the conventional nanocomposites with well-dispersed clay particles and that of pure PVA. This indicates that clay platelets are oriented in the applied stress direction, leading to efficient interfacial stress transfer. In addition, various grades of composite LBL films are prepared by chemical crosslinking and their mechanical properties are assessed. On account of these excellent properties, the LBL films may find potential use as optical and structural elements, and as humidity sensors.
纳米片在聚合物基体中的结构排列对其性能的确定起着重要作用。在本研究中,通过层层(LBL)沉积组装了具有 Laponite 粘土的聚乙烯醇(PVA)的多层复合膜。发现 LBL 膜是水合的、柔性的和透明的。展示了一种简单且无溶剂的方法-在基底上沉积官能化硅烷的自组装单层(SMA)-用于制备独立的 LBL 膜。LBL 膜中的纳米结构的演化与热和机械性能相关。还研究了具有良好分散性的溶剂浇铸 PVA/Laponite 复合材料膜进行比较。我们发现,具有插层纳米粘土系统的结构有序的 LBL 膜表现出拉伸强度、模量和韧性,显著高于具有良好分散粘土颗粒的常规纳米复合材料和纯 PVA 的拉伸强度、模量和韧性。这表明粘土片在施加的应力方向上取向,从而实现有效的界面应力传递。此外,通过化学交联制备了各种等级的复合 LBL 膜,并评估了它们的机械性能。由于这些优异的性能,LBL 膜可能作为光学和结构元件以及湿度传感器而具有潜在的用途。