Tenhunen Tiia-Maria, Pöhler Tiina, Kokko Annaleena, Orelma Hannes, Gane Patrick, Schenker Michel, Tammelin Tekla
VTT Technical Research Centre of Finland Ltd., P.O. Box 1000, FI-02044 VTT Espoo, Finland.
Department of Bioproducts and Biosystems, School of Chemical Engineering, Aalto University, FI-00076 Aalto, Helsinki, Finland.
Nanomaterials (Basel). 2018 Aug 23;8(9):651. doi: 10.3390/nano8090651.
In this work, stability of dispersions and foams containing CaCO₃-based pigments and cellulose nanofibrils (CNF) was evaluated with the aim to reveal the mechanisms contributing to the overall stability of the selected systems. The utmost interest lies in the recently developed hydrocolloid hybrid CaCO₃ pigments and their potential to form bionanocomposite structures when incorporated with CNF. These pigments possess a polyelectrolyte layer deposited on the surface of the particle which is expected to enhance the compatibility between inorganic and organic components. Stability assessment of both dispersions and foams was conducted using turbidity profile scanning. In dispersions, CNF provides stability due to its ability to form a firm percolation network. If surface-modified pigments are introduced, the favourable surface interactions between the pigments and CNF positively influence the stability behaviour and even large macro-size pigments do not interfere with the stability of either dispersions or foams. In foams, the stability can be enhanced due to the synergistic actions brought by CNF and particles with suitable size, shape and wetting characteristics resulting in a condition where the stability mechanism is defined by the formation of a continuous plateau border incorporating a CNF network which is able to trap the inorganic particles uniformly.
在这项工作中,对含有碳酸钙基颜料和纤维素纳米纤维(CNF)的分散体和泡沫的稳定性进行了评估,目的是揭示有助于所选体系整体稳定性的机制。人们最感兴趣的是最近开发的水胶体杂化碳酸钙颜料,以及它们与CNF结合时形成生物纳米复合结构的潜力。这些颜料在颗粒表面沉积有一层聚电解质层,预计这会增强无机和有机成分之间的相容性。使用浊度曲线扫描对分散体和泡沫进行稳定性评估。在分散体中,CNF因其形成牢固渗滤网络的能力而提供稳定性。如果引入表面改性的颜料,颜料与CNF之间良好的表面相互作用会对稳定性行为产生积极影响,即使是大尺寸的宏观颜料也不会干扰分散体或泡沫的稳定性。在泡沫中,由于CNF和具有合适尺寸、形状及润湿特性的颗粒带来的协同作用,稳定性得以增强,从而形成一种情况,即稳定性机制由包含能够均匀捕获无机颗粒的CNF网络的连续平台边界的形成来定义。