首页> 外文期刊>The Journal of Chemical Physics >Thermal behavior, structure, dynamic properties of aqueous glycine solutions confined in mesoporous silica MCM-41 investigated by x-ray diffraction and quasi-elastic neutron scattering
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Thermal behavior, structure, dynamic properties of aqueous glycine solutions confined in mesoporous silica MCM-41 investigated by x-ray diffraction and quasi-elastic neutron scattering

机译:X射线衍射和准弹性中子散射研究的中孔二氧化硅MCM-41中含甘氨酸水溶液的热行为,结构,结构,结构

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Differential scanning calorimetry, X-ray diffraction, and quasi-elastic neutron scattering (QENS) measurements of aqueous glycine solutions confined in mesoporous silica (MCM-41) were performed at different glycine concentrations, pH, and loading ratio (=mass of glycine solution/mass of dry MCM-41) in the temperature range from 305 to 180 K to discuss the confinement effect on the thermal behavior, the structure, and the dynamic properties of the solutions. The freezing points of the confined glycine solutions decreased, compared with those of the bulk solutions. The corresponding exothermic peak due to ice formation became broader with an increase in the glycine concentration. By subtracting X-ray diffraction patterns of dry MCM-41 from those of glycine solution-loaded MCM-41, information about the structure of the confined glycine solutions was obtained. The radial distribution functions of the confined glycine solutions showed that the peaks assigned to the interaction between glycine molecules and the surface silanol (Si-OH) groups of MCM-41 at pH = 5 were observed, in contrast to the case at pH = 2. The QENS data on H/D substituted aqueous glycine solutions gave the translational diffusion coefficients and the residence time of glycine and water molecules confined in MCM-41 individually. The activation energy of the diffusion coefficient of a glycine molecule at pH = 5 was larger than that at pH = 2. These results imply that glycine molecules locate near the pore surface of MCM-41 due to the formation of hydrogen bonding between glycine molecules and the silanol group of the MCM-41 wall at pH = 5. Published by AIP Publishing.
机译:差示扫描量热法,X射线衍射,和准弹性中子散射(QENS)的介孔二氧化硅限于甘氨酸水溶液溶液测量(MCM-41)在不同的甘氨酸浓度,pH值和负载率(=进行的甘氨酸溶液质量/干MCM-41)的温度范围内从305至180的K块,讨论的热行为,结构,和所述溶液的动态特性的限制效应。密闭甘氨酸溶液的凝固点降低,与那些本体溶液的比较。由于冰的形成的增加的甘氨酸浓度变宽对应的放热峰。通过从那些甘氨酸溶液加载MCM-41的中减去干MCM-41的X射线衍射图案,得到约密闭甘氨酸溶液的结构的信息。密闭甘氨酸溶液的径向分布函数表明分配给甘氨酸分子和表面硅烷醇(的Si-OH),MCM-41,在pH的基团之间的相互作用的峰值= 5进行观察,而相比之下,在pH = 2的情况下该QENS上H / d数据取代的甘氨酸水溶液溶液,得到平移扩散系数和在MCM-41单独局限于甘氨酸和水分子的停留时间。在pH甘氨酸分子的扩散系数的激活能= 5由于甘氨酸分子之间形成氢键的比在pH = 2这些结果意味着,甘氨酸分子定位MCM-41的孔表面附近大在pH = 5的硅烷醇基的MCM-41壁的出版商出版AIP。

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