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首页> 外文期刊>The Journal of Chemical Physics >Colloidal dispersions of octadecyl grafted silica spheres in toluene:A global analysis of small angle neutron scattering contrast variation and concentration dependence measurements
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Colloidal dispersions of octadecyl grafted silica spheres in toluene:A global analysis of small angle neutron scattering contrast variation and concentration dependence measurements

机译:十八烷基接枝二氧化硅球在甲苯中的胶态分散体:小角中子散射对比度变化和浓度依赖性测量的整体分析

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In this paper we report measurements of the form factor and the structure factor of a sterically stabilized colloidal dispersion consisting of silica spheres coated with octadecane in toluene by small angle neutron scattering (SANS).The phase diagram of this system shows the liquid-liquid coexistence line and also a jamming transition at higher concentrations,where the jamming line intersects the coexistence line roughly at the critical point.We have performed SANS experiments at a temperature well above the transition temperature and at various volume fractions phi,spanning from the very dilute regime (phi=0.2%)to the critical concentration (phi=16%)and the highly viscous regime (phi=39.2%).Except for the very dilute regime,we observe a structure factor S(q)in all other cases.We fitted our data over the whole concentration regime using a global fitting routine with a core-shell model for the form factor P(q),taking into account the structure factor,which we describe with the Robertas model for an adhesive polydisperse core-shell particle.At a volume fraction of phi=5% a SANS contrast variation experiment has been performed.From that the product of the volume of the shell and the amount of solvent within the corona of our core-shell particle could be determined.At the most probable shell thickness of 2.3 nm a solvent content of about 50% within the corona was found.Moreover we could conclude that the core is not interpenetrated by solvent molecules.From the contrast variation experiment followed that the structure factor at zero average contrast exhibits a strong q dependence,which is an effect of an inhomogeneous particle in combination with a size distribution.
机译:在本文中,我们报告了通过小角度中子散射(SANS)对由十八碳烷在甲苯中包覆十八烷的二氧化硅球组成的空间稳定胶体分散体的形状因子和结构因子的测量结果。该系统的相图显示了液-液共存线以及较高浓度下的干扰跃迁,其中干扰线在临界点处大致与共存线相交。我们在非常稀疏的条件下,在远高于转变温度的温度和各种体积分数phi下进行了SANS实验。 (phi = 0.2%)达到临界浓度(phi = 16%)和高粘度状态(phi = 39.2%)。除了非常稀薄的状态外,在所有其他情况下我们都观察到结构因子S(q)。使用全局拟合例程对我们的数据进行拟合,并使用核壳模型对形状因子P(q)进行了整体拟合,并考虑到了结构因子,我们用Robertas描述粘性多分散核-壳颗粒的模型。在phi = 5%的体积分数下,进行了SANS对比度变化实验。从中我们得出壳的体积和我们核的电晕内溶剂量的乘积-在最可能的壳厚度为2.3 nm的条件下,发现电晕内的溶剂含量约为50%,此外,我们可以得出结论,该芯没有被溶剂分子相互渗透。平均对比度为零的结构因子表现出很强的q依赖性,这是不均匀粒子与尺寸分布相结合的结果。

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