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Thermo-sensitive colloidal crystals composed of monodisperse colloidal silica- and poly(N-isopropyl acrylamide) gel spheres

机译:由单分散硅胶和聚(N-异丙基丙烯酰胺)凝胶球组成的热敏胶体晶体

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摘要

Thermo-sensitive colloidal crystals were prepared simply and conveniently by mixing of colloidal silica spheres with a series of thermo-sensitive gel spheres, poly (N-isopropyl acrylamide) (pNIPAm, 225 similar to 1500 nm in hydrodynamic diameter, 0.5 similar to 5 mol% in degree of cross-linking and at 20 similar to 45 A degrees C) in the deionized aqueous suspension. The thermo-reversible change in the lattice spacing of colloidal crystals of monodispersed silica spheres (CS83, 103 nm in diameter) depends on the size of the admixed pNIPAm. For gel spheres with similar or less than that of the silica spheres, the lattice spacing decreased with rising temperature. On the other hand, the spacing increased with temperature for the mixtures with pNIPAm spheres of larger than the size of the silica spheres. A mechanism, which is able to explain properly the several experiments including the present work, is proposed, i.e., balancing between the weak adsorption and segregation effects of silica with gel spheres.
机译:通过将胶体二氧化硅球与一系列热敏凝胶球,聚(N-异丙基丙烯酰胺)(pNIPAm,225的流体动力学直径近似于1500 nm,0.5的近似于5 mol)混合来简单而方便地制备热敏胶体晶体在去离子水悬浮液中的交联度为20%,并且在20℃下类似于45℃。单分散二氧化硅球(CS83,直径为103 nm)的胶态晶体的晶格间距的热可逆变化取决于混合的pNIPAm的大小。对于具有与二氧化硅球相似或小于二氧化硅球的凝胶球,其晶格间距随温度升高而减小。另一方面,pNIPAm球大于二氧化硅球尺寸的混合物,间距随温度增加而增加。提出了一种能够正确解释包括本研究在内的几个实验的机理,即在硅胶与凝胶球的弱吸附和偏析效果之间取得平衡。

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