首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Impact of Pore Size and Pore Surface Composition on the Dynamics of Confined Water in Highly Ordered Porous Silica
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Impact of Pore Size and Pore Surface Composition on the Dynamics of Confined Water in Highly Ordered Porous Silica

机译:孔尺寸和孔表面组成对高阶多孔二氧化硅中承压水动力学的影响

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摘要

The impact of pore size and pore surface composition on water dynamics confined in highly ordered porous silica material (MCM-41) was investigated using neutron scattering for correlation times in the picosecond range. Samples were synthesized by the hydrothermal route and grafted via the hydrolytic surface sol—gel method to obtain pore wall surfaces with Si—OH, Al—OH, or Zr—OH terminations and pore sizes from 2 to 2.7 nm. The samples were characterized after grafting using nitrogen adsorption—desorption isotherms and small-angle X-ray scattering. At room temperature, the analysis of the quasi-elastic neutron scattering data shows a decrease of mean square displacement of the mobile protons with the pore size and when Si—OH surface termination is replaced by Al— OH and Zr—OH. The water translational diffusion coefficients are close to the bulk value whatever the samples. The amounts of fixed protons depend on the pore size and the ability of the grafted layers to immobilize the water molecules which were determined also from thermogravimetric and differential thermal analysis. This last result highlights that pore surface composition could he the predominant parameter affecting the fixed proton content at this time scale.
机译:使用中子散射对皮秒范围内的相关时间,研究了孔径和孔表面组成对受限于高度有序多孔二氧化硅材料(MCM-41)中的水动力学的影响。通过水热途径合成样品,并通过水解表面溶胶-凝胶法接枝,以获得具有Si-OH,Al-OH或Zr-OH末端且孔径为2至2.7 nm的孔壁表面。接枝后使用氮气吸附-解吸等温线和小角度X射线散射对样品进行表征。在室温下,对准弹性中子散射数据的分析表明,随着质子孔径的变化以及当Si-OH表面末端被Al-OH和Zr-OH取代时,可移动质子的均方位移减小。无论样品如何,水的平移扩散系数都接近于体积值。固定质子的量取决于孔径和接枝层固定水分子的能力,这也由热重分析和差热分析确定。最后的结果表明,在该时间尺度上,孔表面组成可能是影响固定质子含量的主要参数。

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