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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Dispersions of silica nanoparticles in ionic liquids investigated with advanced rheology
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Dispersions of silica nanoparticles in ionic liquids investigated with advanced rheology

机译:先进流变学研究二氧化硅纳米粒子在离子液体中的分散性

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The colloidal stabilities of dispersions of unmodified and surface-functionalized SiO _2 nanoparticles in hydrophobic and hydrophilic imidazolium-based ionic liquids were studied with advanced rheology at three temperatures (25, 100, and 200 °C). The rheological behavior of the dispersions was strongly affected by the ionic liquids hydrophilicity, by the nanoparticles surface, by the concentration of the nanoparticles in the dispersion as well as by the temperature. The unmodified hydrophilic nanoparticles showed a better compatibility with the hydrophilic ionic liquid. The SiO _2 surface functionalization with hydrophobic groups clearly improved the colloidal stability of the dispersions in the hydrophobic ionic liquid. The temperature increase was found to lead to a destabilization in all studied systems, especially at higher concentrations. The results of this study imply that ionic liquids with tailored properties could be used in absorbers directly after reactors for gas-phase synthesis of nanoparticles or/and as solvents for their further surface functionalization without agglomeration or aggregation.
机译:在三个温度(25、100和200°C)下,采用先进的流变学方法研究了未改性和表面官能化的SiO _2纳米颗粒在疏水和亲水咪唑类离子液体中的分散体胶体稳定性。分散液的流变行为受到离子液体亲水性,纳米颗粒表面,分散液中纳米颗粒浓度以及温度的强烈影响。未改性的亲水性纳米颗粒显示出与亲水性离子液体更好的相容性。具有疏水基团的SiO _2表面官能化明显改善了疏水性离子液体中分散体的胶体稳定性。发现温度升高会导致所有研究系统的不稳定,尤其是在较高浓度下。这项研究的结果表明,具有定制性能的离子液体可在反应器后直接用于吸收剂中,以气相合成纳米颗粒或/和作为溶剂用于进一步的表面功能化而不会发生团聚或聚集。

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