Wahba Laura, D'Arienzo Massimiliano, Dirè Sandra, Donetti Raffaella, Hanel Thomas, Morazzoni Franca, Niederberger Markus, Santo Nadia, Tadiello Luciano, Scotti Roberto
Dip. Scienze dei Materiali, INSTM, University of Milano-Bicocca, Via R. Cozzi 53, 20125 Milano, Italy.
Soft Matter. 2014 Apr 7;10(13):2234-44. doi: 10.1039/c3sm51813b.
Silica-natural rubber nanocomposites were obtained through a novel non-aqueous in situ sol-gel synthesis, producing the amount of water necessary to induce the hydrolysis and condensation of a tetraethoxysilane precursor by esterification of formic acid with ethanol. The method allows the synthesis of low hydrophilic silica nanoparticles with ethoxy groups linked to the silica surface which enable the filler to be more dispersible in the hydrophobic rubber. Thus, high loaded silica composites (75 phr, parts per hundred rubber) were obtained without using any coupling agent. Transmission Electron Microscopy (TEM) showed that the silica nanoparticles are surrounded by rubber layers, which lower the direct interparticle contact in the filler-filler interaction. At the lowest silica loading (up to 30 phr) silica particles are isolated in rubber and only at a large amount of filler (>60 phr) the interparticle distances decrease and a continuous percolative network, connected by thin polymer films, forms throughout the matrix. The dynamic-mechanical properties confirm that the strong reinforcement of the rubber composites is related to the network formation at high loading. Both the improvement of the particle dispersion and the enhancement of the silica loading are peculiar to the non-aqueous synthesis approach, making the method potentially interesting for the production of high-loaded silica-polymer nanocomposites.
通过一种新型非水原位溶胶 - 凝胶合成法制备了二氧化硅 - 天然橡胶纳米复合材料,该方法通过甲酸与乙醇的酯化反应产生诱导四乙氧基硅烷前驱体水解和缩合所需的水量。该方法能够合成具有与二氧化硅表面相连的乙氧基的低亲水性二氧化硅纳米粒子,使填料在疏水性橡胶中更易分散。因此,无需使用任何偶联剂即可获得高填充量的二氧化硅复合材料(75份,每百份橡胶)。透射电子显微镜(TEM)显示,二氧化硅纳米粒子被橡胶层包围,这降低了填料 - 填料相互作用中颗粒间的直接接触。在最低二氧化硅填充量(高达30份)时,二氧化硅颗粒在橡胶中是孤立的,只有在大量填料(>60份)时,颗粒间距离才会减小,并且通过薄聚合物膜连接形成贯穿整个基体的连续渗流网络。动态力学性能证实,橡胶复合材料的强增强作用与高填充量下的网络形成有关。颗粒分散性的改善和二氧化硅填充量的提高都是非水合成方法所特有的,这使得该方法对于生产高填充量的二氧化硅 - 聚合物纳米复合材料具有潜在的吸引力。