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首页> 外文期刊>Journal of Applied Crystallography >Hindered nematic alignment of hematite spindles in poly(N-isopropylacrylamide) hydrogels: a smallangle X-ray scattering and rheology study
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Hindered nematic alignment of hematite spindles in poly(N-isopropylacrylamide) hydrogels: a smallangle X-ray scattering and rheology study

机译:赤铁矿主轴在聚(N-异丙基丙烯酰胺)水凝胶中的致象对准:幼株X射线散射和流变研究

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摘要

Field-induced changes to the mesostructure of ferrogels consisting of spindleshaped hematite particles and poly(N-isopropylacrylamide) are investigated by means of small-angle X-ray scattering (SAXS). Related field-induced changes to the macroscopic viscoelastic properties of these composites are probed by means of oscillatory shear experiments in an external magnetic field. Because of their magnetic moment and magnetic anisotropy, the hematite spindles align with their long axis perpendicular to the direction of an external magnetic field. The field-induced torque acting on the magnetic particles leads to an elastic deformation of the hydrogel matrix. Thus, the field-dependent orientational distribution functions of anisotropic particles acting as microrheological probes depend on the elastic modulus of the hydrogel matrix. The orientational distribution functions are determined by means of SAXS experiments as a function of the varying flux density of an external magnetic field.With increasing elasticity of the hydrogels, tuned via the polymer volume fraction and the crosslinking density, the field-induced alignment of these anisotropic magnetic particles is progressively hindered. The microrheological results are in accordance with macrorheological experiments indicating increasing elasticity with increasing flux density of an external field.
机译:通过小角度X射线散射(SAXS)研究了由Spindleshaped赤铁矿颗粒和聚(N-异丙基丙烯酰胺)组成的铁蛋白瘤的腹腔的变化。通过外部磁场中的振荡剪切实验探讨了这些复合材料的宏观粘弹性性质的相关场诱导的变化。由于它们的磁矩和磁各向异性,赤铁矿主轴与它们的长轴垂直于外部磁场的方向对齐。作用在磁性颗粒上的场感应扭矩导致水凝胶基质的弹性变形。因此,作为微流学探针的各向异性颗粒的域依赖性取向分布函数取决于水凝胶基质的弹性模量。定义分布函数通过SAXS实验确定作为外部磁场的变化磁通密度的函数。通过增加水凝胶的弹性,通过聚合物体积分数和交联密度调谐,逼真对准这些各向异性磁性颗粒逐渐受阻。微流学结果符合大致型实验,表明随着外场的磁通密度的增加而增加弹性。

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