Tripaldi Laura, Callone Emanuela, D'Arienzo Massimiliano, Dirè Sandra, Giannini Luca, Mascotto Simone, Meyer Andreas, Scotti Roberto, Tadiello Luciano, Di Credico Barbara
Dept. of Materials Science, INSTM, University of Milano-Bicocca, Via R. Cozzi, 55, 20125 Milano, Italy.
Klaus Müller Magnetic Resonance Lab., Dept. Industrial Engineering, University of Trento, via Sommarive 9, 38123 Trento, Italy.
Soft Matter. 2021 Oct 27;17(41):9434-9446. doi: 10.1039/d1sm01085a.
"Hairy" nanoparticles (HNPs), inorganic NPs functionalized with polymer chains, are promising building blocks for the synthesis of advanced nanocomposite (NC) materials having several technological applications. Recent evidence shows that HNPs self-organize in a variety of anisotropic structures, resulting in an improvement of the functional properties of the materials, in which are embedded. In this paper, we propose a three-step colloidal synthesis of spherical SiO-HNPs, with controlled particle morphology and surface chemistry. In detail, the SiO core, synthesized by a modified Stöber method, was first functionalized with a short-chain amino-silane, which acts as an anchor, and then covered by maleated polybutadiene (PB), a rubbery polymer having low glass transition temperature, rarely considered until now. An extensive investigation by a multi-technique analysis demonstrates that the synthesis of SiO-HNPs is simple, scalable, and potentially applicable to different kind of NPs and polymers. Morphological analysis shows the overall distribution of SiO-HNPs with a certain degree of spatial organization, suggesting that the polymer coating induces a modification of NP-NP interactions. The role of the surface PB brushes in influencing the special arrangement of SiO-HNPs was observed also in -1,4-polybutadiene (-PB), since the resulting NC exhibited the particle packing in "string-like" superstructures. This confirms the tendency of SiO-HNPs to self-assemble and create alternative structures in polymer NCs, which may impart them peculiar functional properties.
“毛发状”纳米颗粒(HNPs)是用聚合物链功能化的无机纳米颗粒,是合成具有多种技术应用的先进纳米复合材料(NC)的有前途的构建块。最近的证据表明,HNPs能自组装成各种各向异性结构,从而改善了嵌入其中的材料的功能特性。在本文中,我们提出了一种三步胶体合成法来制备球形SiO-HNPs,该方法能控制颗粒形态和表面化学性质。具体而言,通过改进的施托伯方法合成的SiO核首先用短链氨基硅烷进行功能化,氨基硅烷作为锚定剂,然后用马来酸化聚丁二烯(PB)覆盖,PB是一种玻璃化转变温度较低的橡胶状聚合物,直到现在很少被考虑使用。通过多技术分析进行的广泛研究表明,SiO-HNPs的合成简单、可扩展,并且可能适用于不同种类的纳米颗粒和聚合物。形态分析表明SiO-HNPs具有一定程度的空间组织的整体分布,这表明聚合物涂层会引起纳米颗粒-纳米颗粒相互作用的改变。在聚-1,4-丁二烯(-PB)中也观察到了表面PB刷在影响SiO-HNPs特殊排列方面的作用,因为所得的NC呈现出“串状”超结构中的颗粒堆积。这证实了SiO-HNPs在聚合物NCs中自组装并形成替代结构的趋势,这可能赋予它们特殊的功能特性。