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Dielectric and Thermal Studies of Segmental Dynamics in Silica/PDMS and Silica/Titania/PDMS Nanocomposites

机译:二氧化硅/ PDMS和二氧化硅/二氧化钛/ PDMS纳米复合材料中分段动力学的介电和热研究

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Effects of silica and silica/titania nanoparticles on glass transition and segmental dynamics of poly(dimethylsiloxane) (PDMS) were studied for composites of a core-shell type using differential scanning calorimetry, thermally stimulated depolarization current, and dielectric relaxation spectroscopy techniques. Strong interactions between the filler and the polymer suppress crystallinity (Tc, Xc) and affect significantly the evolution of the glass transition in the nanocomposites. The segmental relaxation associated with the glass transition consists of three contributions, arising, in the order of decreasing mobility, from the bulk (unaffected) amorphous polymer fraction (α relaxation), from polymer chains restricted between condensed crystal regions (α_c relaxation), and from the semibound polymers in an interfacial layer with strongly reduced mobility due to interactions with surface hydroxyls of silica and silica/ titania nanoparticles (α' relaxation). The evolution of surface affected CH_3 groups, as well as the degree of interaction of PDMS molecules with surface hydroxyl groups as a function of treatment temperature, was assessed by Fourier transform infrared spectroscopy, thermogravimetry and differential thermal analysis. The effectiveness of silica/PDMS and silica/titania/PDMS nanocomposites as hydrophobic coatings was investigated by static contact angle measurements. It was shown that the presence of titania nanoparticles and adsorbed PDMS promotes the hydrophobic properties of the PDMS coating after treatment in the 80-650°C range.
机译:使用差示扫描量热法,热激发去极化电流和介电弛豫光谱技术研究了二氧化硅和二氧化硅/二氧化钛纳米粒子对核壳型复合材料的聚二甲基硅氧烷(PDMS)的玻璃化转变和分段动力学的影响。填料与聚合物之间的强相互作用抑制了结晶度(Tc,Xc),并显着影响了纳米复合材料中玻璃化转变的演变。与玻璃化转变相关的分段弛豫包括三个贡献,这三个贡献是按迁移率递减的顺序产生的,其来自本体(未受影响)的非晶态聚合物部分(α弛豫),受限制在凝聚晶体区域之间的聚合物链(α_c弛豫)和由于与二氧化硅和二氧化硅/二氧化钛纳米粒子的表面羟基相互作用(α'弛豫),在界面层中的半键合聚合物的流动性大大降低。通过傅里叶变换红外光谱,热重分析和差热分析评估了受表面影响的CH_3基团的演变以及PDMS分子与表面羟基的相互作用程度随处理温度的变化。通过静态接触角测量研究了二氧化硅/ PDMS和二氧化硅/二氧化钛/ PDMS纳米复合材料作为疏水涂层的有效性。已经表明,二氧化钛纳米颗粒和吸附的PDMS的存在在80-650℃范围内处理后促进了PDMS涂层的疏水性。

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