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The effect of size ratio on the sphere structure factor in colloidal sphere-plate mixtures

机译:尺寸比对胶体球-板混合物中球结构因子的影响

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Binary mixtures of colloidal particles of sufficiently different sizes or shapes tend to demix at high concentration. Already at low concentration, excluded volume interactions between the two species give rise to structuring effects. Here, a new theoretical description is proposed of the structure of colloidal sphere-plate mixtures, based on a density expansion of the work needed to insert a pair of spheres and a single sphere in a sea of them, in the presence or not of plates. The theory is first validated using computer simulations. The predictions are then compared to experimental observations using silica spheres and gibbsite platelets. Small-angle neutron scattering was used to determine the change of the structure factor of spheres on addition of platelets, under solvent contrast conditions where the platelets were invisible. Theory and experiment agreed very well for a platelet/sphere diameter ratio Dd 2.2 and reasonably well for Dd 5. The sphere structure factor increases at low scattering vector Q in the presence of platelets; a weak reduction of the sphere structure factor was predicted at larger Q, and for the system with Dd 2.2 was indeed observed experimentally. At fixed particle volume fraction, an increase in diameter ratio leads to a large change in structure factor. Systems with a larger diameter ratio also phase separate at lower concentrations.
机译:足够不同的尺寸或形状的胶体颗粒的二元混合物倾向于在高浓度下分解。在低浓度下,两个物种之间排除的体积相互作用已引起结构效应。在此,根据在存在或不存在板的情况下将一对球体和单个球体插入其海中所需的功的密度扩展,提出了胶体球-板混合物的结构的新理论描述。 。该理论首先通过计算机仿真得到验证。然后将预测结果与使用硅胶球和菱镁矿血小板的实验观察结果进行比较。小角度中子散射被用来确定在不添加血小板的溶剂对比条件下,添加血小板时球的结构因子的变化。理论和实验对于血小板/球直径比Dd 2.2非常吻合,对于Dd 5也相当吻合。在存在血小板的情况下,低散射矢量Q下球结构因子增加;在较大的Q值下,预测球结构因子的弱减小,对于Dd 2.2的系统,确实可以通过实验观察到。在固定的颗粒体积分数下,直径比的增加会导致结构系数发生较大变化。直径比较大的系统在较低浓度下也会发生相分离。

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