Department of Chemistry, Seoul National University, Seoul 151-747, Korea.
Langmuir. 2010 May 18;26(10):7555-60. doi: 10.1021/la904362x.
We have successfully fabricated triacetylcellulose (TAC) polymer-silica nanocomposite films having up to 40 wt % of incorporated silica nanoparticles by deliberately designing a surface ligand that has a structure similar to that of polymer repeating units and effectively modifying the surface of silica nanoparticles through chemical bonding. Cross-sectional TEM analysis reveals no significant aggregation in all TAC-silica nanocomposite films. Thermal analysis results suggested that TAC-silica nanocomposites had higher T(g) and T(c) values as compared to pure TAC, and the increase in T(g) and T(c) was affected by the silica content. The transparency of all the nanocomposite films was over 80% in the visible range, confirming the excellent compatibility of nanoparticles with TAC. In this study, we enhance the interaction between nanoparticles and polymer matrices by modifying the surface of nanoparticles with a ligand that has a structure similar to that of polymer repeating units. It is expected that this method can be applied to other polymer systems to develop useful nanocomposites.
我们成功地制备了三醋酸纤维素(TAC)聚合物-二氧化硅纳米复合材料薄膜,其中掺入的二氧化硅纳米粒子的含量高达 40wt%,通过精心设计具有类似于聚合物重复单元结构的表面配体,并通过化学键有效地修饰了二氧化硅纳米粒子的表面。横截面 TEM 分析表明,所有 TAC-二氧化硅纳米复合材料薄膜中均无明显聚集。热分析结果表明,与纯 TAC 相比,TAC-二氧化硅纳米复合材料具有更高的玻璃化转变温度(Tg)和热分解温度(Tc),并且 Tg 和 Tc 的增加受二氧化硅含量的影响。所有纳米复合材料薄膜在可见光范围内的透光率均超过 80%,证实了纳米粒子与 TAC 的优异相容性。在这项研究中,我们通过用具有类似于聚合物重复单元结构的配体修饰纳米粒子的表面,增强了纳米粒子与聚合物基质之间的相互作用。预计这种方法可以应用于其他聚合物系统,以开发有用的纳米复合材料。