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Thermal rheology and microstructure of shear thickening suspensions of silica nanoparticles dispersed in the ionic liquid [C(4)mim][BF4]

机译:离子液体中分散在离子液体中的硅纳米粒子的剪切增稠悬浮液的热流变和微观结构[C(4)MIM] [BF4]

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摘要

A stable dispersion of silica nanoparticles in a common ionic liquid [C(4)mim][BF4] that exhibits significant shear thickening is formulated by controlling the strength of hydrogen bonding between the nanoparticle surface and the anion of [C4mim][BF4]. Colloidal stability is demonstrated to be due to the formation of solvation layers, the properties of which are determined by scattering measurements. Time-temperature superposition measurements and the onset of yielding behavior in steady shear indicate the increase of particle-particle attraction and loss of stability of colloidal dispersions above 30 degrees C. Small angle neutron scattering and dynamic light scattering measurements confirm the reduction in solvation layering at elevated temperatures, leading to a transition from stable dispersion to unstable, attractive gel with increasing temperature (i.e., an inverse melting transition). It is demonstrated how controlling specific surface-anion interactions through chemical functionality can be used to formulate nanoparticle dispersions in ionic liquids with specific rheological properties. (C) 2017 The Society of Rheology.
机译:通过控制纳米颗粒表面与[C4mim] [BF4]的阴离子的氢键强度,配制了含有显着剪切增厚的常见离子液体[C(4)MIM] [BF4]中的稳定分散。胶体稳定性被证明是由于溶剂化层的形成,其特性通过散射测量来确定。时间温度叠加测量和稳定剪切中产生的发作表明粒子粒子吸引力的增加和胶体分散体稳定性的损失在30摄氏度高于30℃。小角度中子散射和动态光散射测量确认溶剂化层的减少温度升高,导致从稳定的分散到不稳定,吸引力的凝胶的过渡,温度升高(即,逆熔化过渡)。证明了如何通过化学官能度控制特定表面阴离子相互作用,可用于制备具有特异性流变性质的离子液体中的纳米颗粒分散体。 (c)2017年流变学会。

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