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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Combining small angle neutron scattering (SANS) and fluorescence correlation spectroscopy (FCS) measurements to relate diffusion in agarose gels to structure
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Combining small angle neutron scattering (SANS) and fluorescence correlation spectroscopy (FCS) measurements to relate diffusion in agarose gels to structure

机译:结合小角度中子散射(SANS)和荧光相关光谱(FCS)测量,将琼脂糖凝胶中的扩散与结构相关联

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Small angle neutron scattering (SANS) and fluorescence correlation spectroscopy (FCS) measurements were carried out on agarose hydrogels to link their microscopic structure to the diffusivity of solutes at different scales. SANS allowed for the determination of the distribution of void volumes within the gels. They were shown to be compatible with a random network of cylindrical fibers as described by the Ogston model. FCS measured solute diffusivity in spaces similar in size to the void volumes, and thus, the results reflected the gel heterogeneity. Solute diffusivity was predicted by modeling the gel as microscopic geometrical cells. Variations in the diffusivity of solutes of different sizes could be predicted from the structural parameters of the gel using theory, taking into account obstruction by cylindrical cells and solute hydrodynamics. Prediction of the FCS autocorrelation functions for solutes from a cell model demonstrated a lack of sensitivity of this technique for multicomponent analysis.
机译:在琼脂糖水凝胶上进行了小角中子散射(SANS)和荧光相关光谱(FCS)测量,以将其微观结构与溶质在不同尺度下的扩散性联系起来。 SANS可以确定凝胶中空隙体积的分布。如Ogston模型所述,它们与圆柱形纤维的随机网络兼容。 FCS在与空隙体积相似的空间中测量溶质的扩散率,因此,结果反映了凝胶的异质性。通过将凝胶建模为微观几何细胞,可以预测溶质的扩散性。考虑到圆柱单元的阻塞和溶质的流体动力学,可以使用理论从凝胶的结构参数预测不同大小的溶质的扩散率变化。从细胞模型对溶质的FCS自相关函数的预测表明,该技术对多组分分析缺乏敏感性。

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