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Tailoring Surface Properties of Paper Using Nanosized Precipitated Calcium Carbonate Particles

机译:使用纳米级沉淀碳酸钙颗粒定制纸张的表面性能

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Pigment particles used in paper coatings are typically of micrometer size and consequently the thickness of the coatings is, even at its lowest, in micrometer scale. Progress in nanotechnol-ogy has given way to the development of nanosized materials to be used in coatings, yet their exploitation has not been studied to a great extent. This study examines utilization of nanosized precipitated calcium carbonate (nanoPCC) particles in nanoscale thin coating layers. In contrast to com~2only used coatings, a thin nanoparticle-based coating was targeted to change the substrate surface characteristics via controlled surface structure rather than via high coat weight. A novel approach for stabilizing and modifying the nanoPCC particles with pectin and alkenyl succinic anhydride (ASA) was utilized and a nanoparticle coating with uniform particle distribution was created. The coating applied on paper substrate was hydrophobic, having a water contact angle of 125°. Particle surface modification provided dispersion stability, enabling control of the coating layer structure. The introduced concept provides a new approach to paper coatings utilizing controlled deposition of nanoparticles with extremely low coat weight, yet having high impact on substrate surface properties. Additionally, as paper is an environmentally sound product, the approach to form a controllable nanostructure on a green substrate has potential in applications outside the traditional paper products.
机译:纸涂料中使用的颜料颗粒通常为微米级,因此涂料的厚度,即使是最低的,也只有微米级。纳米技术的发展已让位于涂料中使用的纳米材料的开发,但尚未对其进行广泛的研究。这项研究检查了纳米级薄涂层中纳米级沉淀碳酸钙(nanoPCC)颗粒的利用率。与仅使用复合涂料相反,以纳米颗粒为基础的薄涂层旨在通过受控的表面结构而不是通过高涂层重量来改变基材的表面特性。利用一种利用果胶和链烯基琥珀酸酐(ASA)稳定和修饰nanoPCC颗粒的新方法,并创建了具有均匀颗粒分布的纳米颗粒涂层。涂在纸质基材上的涂料是疏水的,水接触角为125°。颗粒表面改性可提供分散稳定性,从而可控制涂层结构。引入的概念为纸涂料提供了一种新方法,该方法利用了具有极低涂层重量的纳米颗粒的受控沉积,但对基材表面性能的影响却很大。另外,由于纸是对环境无害的产品,因此在绿色衬底上形成可控纳米结构的方法在传统纸产品之外的应用中具有潜力。

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