Department of Chemistry, Carnegie Mellon University , 4400 Fifth Ave, Pittsburgh, Pennsylvania 15213, United States.
Department of Materials Science and Engineering, Carnegie Mellon University , 5000 Forbes Avenue, Pittsburgh, Pennsylvania, 15213, United States.
ACS Appl Mater Interfaces. 2016 Mar 2;8(8):5458-65. doi: 10.1021/acsami.5b12311. Epub 2016 Feb 22.
Alumina nanoparticles are widely used as nanofillers for polymer nanocomposites. Among several different polymorphs of alumina, α-alumina has the most desirable combination of physical properties. Hence, the attachment of polymer chains to α-alumina to enhance compatibility in polymeric matrixes is an important goal. However, the chemical inertness and low concentration of surface hydroxyl groups have rendered polymer modification of α-alumina a long-standing challenge. Herein, we report that activation of α-alumina in concentrated or molten NaOH as well as in molten K2S2O7 increased polymer graft density up to 50%, thereby facilitating the synthesis of α-alumina brush particles with uniform grafting density of 0.05 nm(-2) that are readily miscible or dispersible in organic solvents or in chemically compatible polymeric hosts.
氧化铝纳米粒子被广泛用作聚合物纳米复合材料的纳米填料。在氧化铝的几种不同多晶型体中,α-氧化铝具有最理想的物理性能组合。因此,将聚合物链连接到α-氧化铝上以提高在聚合物基体中的相容性是一个重要目标。然而,由于化学惰性和表面羟基浓度低,使得α-氧化铝的聚合物改性一直是一个挑战。在这里,我们报告说,在浓氢氧化钠或熔融 K2S2O7 中对α-氧化铝进行活化,可将聚合物接枝密度提高到 50%,从而有利于合成具有 0.05nm(-2)均匀接枝密度的α-氧化铝刷状粒子,其易于在有机溶剂或化学相容的聚合物基质中混溶或分散。