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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Influence of Morphology and Crystallinity on Surface Reactivity of Nanosized Anatase TiO2 Studied by Adsorption Techniques. 1. The Use of Gaseous Molecular Probes
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Influence of Morphology and Crystallinity on Surface Reactivity of Nanosized Anatase TiO2 Studied by Adsorption Techniques. 1. The Use of Gaseous Molecular Probes

机译:吸附技术研究形态和结晶度对纳米锐钛矿型TiO2表面反应性的影响。 1.气态分子探针的使用

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Various titanium dioxide nanoparticles were prepared by sol-gel method in order to obtain samples showing different sizes and morphologies. An original approach based on the adsorption of gaseous molecules from the gas phase was proposed to gain information about surface energy of nanosized TiO2 anatase in terms of interfacial reactivity and heterogeneity. Argon, nitrogen, and ammonia were selected as such surface molecular probes. The mainly observed crystallographic faces of anatase particles were the {101} and {001} surfaces together with the {100} one. Their abundance was correlated with the energy distribution inferred from the local isotherms of argon adsorption in the low-pressure range. The acid character of the anatase surface was probed by nitrogen molecules, and, consequently, the location of polar sites on the particle surface could be determined in correlation with the argon adsorption domains. Moreover, the number and the strength of surface acid sites were evaluated with the aid of two-cycle adsorption of gaseous ammonia supplemented by appropriate flow microcalorimetry measurements. This molecular probe revealed significant differences among the samples depending on their crystal shape or face distribution.
机译:通过溶胶-凝胶法制备了各种二氧化钛纳米颗粒,以获得具有不同尺寸和形态的样品。提出了一种基于从气相中吸附气态分子的原始方法,以从界面反应性和异质性方面获得有关纳米级TiO2锐钛矿表面能的信息。选择氩,氮和氨作为这种表面分子探针。锐钛矿颗粒的主要观察晶体表面是{101}和{001}表面以及{100}表面。它们的丰度与低压范围内氩吸附的局部等温线推断的能量分布相关。锐钛矿表面的酸性特征是由氮分子探测的,因此,可以确定粒子表面上极性位点的位置与氩吸附域相关。此外,借助于气态氨的二循环吸附并通过适当的流动微量量热法测量来评估表面酸性位的数量和强度。该分子探针揭示出样品之间的显着差异,具体取决于它们的晶体形状或面分布。

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