Materials Engineering Center, UdR INSTM, University of Perugia, Str. Pentima 4, 05100 Terni, Italy.
Materials Engineering Center, UdR INSTM, University of Perugia, Str. Pentima 4, 05100 Terni, Italy.
Carbohydr Polym. 2014 Nov 26;113:394-402. doi: 10.1016/j.carbpol.2014.07.010. Epub 2014 Jul 15.
In this study, thin films of cellulose nanocrystals (CNC) and silver nanoparticles (Ag) were assembled on different substrates by spin coating. The effect of substrates, deposition parameters, and nanocrystal modification on the topographical and hydrophilic properties of the obtained layers was investigated. Dilute concentrations of pristine cellulose nanocrystals (CNC) and surfactant modified crystals (s-CNC) were used in order to evaluate the effect of modification and concentration on the uniformity of the spin coated cellulose/silver layers. Morphological investigations by field emission scanning electron microscopy and atomic force microscopy were performed in order to prove the uniformity of the obtained films, while the wettability of different surfaces were studied and correlated to the cellulose modification and content. The ability of s-CNC to form a stable dispersion in chloroform permits the formation of a uniform cellulose film on the substrate surfaces generating regular films during the spin coating process. Topographical investigations show, on the other hand, that the CNC/Ag suspension produces a non-uniform distribution. These effects can be mainly attributed to the surfactant action rather than to the chemical and electrical properties of the substrate surface. Finally, contact angle studies, underline the hydrophilic nature of s-CNC/Ag based films highlighting that the wettability properties are strongly influenced by the cellulose nanocrystal nature.
在这项研究中,通过旋涂法将纤维素纳米晶体(CNC)和银纳米粒子(Ag)的薄膜组装在不同的基底上。研究了基底、沉积参数和纳米晶体修饰对所得层的形貌和润湿性的影响。使用了稀浓度的原始纤维素纳米晶体(CNC)和表面活性剂修饰的晶体(s-CNC),以评估修饰和浓度对旋涂纤维素/银层均匀性的影响。通过场发射扫描电子显微镜和原子力显微镜进行了形貌研究,以证明所得薄膜的均匀性,同时研究了不同表面的润湿性,并将其与纤维素的修饰和含量相关联。s-CNC 在氯仿中形成稳定分散体的能力允许在基底表面上形成纤维素的均匀薄膜,从而在旋涂过程中生成规则的薄膜。另一方面,形貌研究表明,CNC/Ag 悬浮液产生了不均匀的分布。这些影响主要归因于表面活性剂的作用,而不是基底表面的化学和电学性质。最后,接触角研究强调了 s-CNC/Ag 基薄膜的亲水性,突出了润湿性性质强烈受纤维素纳米晶体性质的影响。