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首页> 外文期刊>Journal of Colloid and Interface Science >Adsorption of polar and nonpolar compounds onto complex nanooxides with silica, alumina, and titania
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Adsorption of polar and nonpolar compounds onto complex nanooxides with silica, alumina, and titania

机译:极性和非极性化合物在具有二氧化硅,氧化铝和二氧化钛的复合纳米氧化物上的吸附

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摘要

Adsorption of low-molecular adsorbates (nonpolar hexane, nitrogen, weakly polar acetonitrile, and polar diethylamine, triethylamine, and water) onto individual (silica, alumina, titania), binary (silica/alumina (SA), silica/titania (ST)), and ternary (alumina/silica/titania, AST) fumed oxides was studied to analyse the effects of morphology and surface composition of the materials. Certain aspects of the interfacial phenomena dependent on the structural characteristics of oxides were analysed using calorimetry, ~1H NMR, and Raman spectroscopies, XRD, and ab initio quantum-chemical calculations. The specific surface area S_(BET,X)-to-SBET,N2 ratio (X is an organic adsorbate) changes from 0.68 for hexane adsorbed onto amorphous SA8 (degassed at 200°C) to 1.85 for acetonitrile adsorbed onto crystalline alumina (degassed at 900°C). These changes are relatively large because of variations in orientation, lateral interactions, and adsorption compressing of molecules adsorbed onto oxide surfaces. Larger S_(BET,X)/SBET,N2 values are observed for mixed oxides with higher crystallinity of titania or/and alumina phases in larger primary nanoparticles with greater surface roughness and hydrophilicity. Polar adsorbates can change the structure of aggregates of oxide nanoparticles that can, in turn, affect the results of adsorption measurements.
机译:低分子被吸附物(非极性己烷,氮气,弱极性乙腈和极性二乙胺,三乙胺和水)的吸附到单个(二氧化硅,氧化铝,二氧化钛),二元(二氧化硅/氧化铝(SA),二氧化硅/二氧化钛(ST))上),并研究了三元(氧化铝/二氧化硅/二氧化钛,AST)热解氧化物,以分析材料的形貌和表面组成的影响。使用量热法,〜1H NMR和拉曼光谱,XRD和从头算量子化学计算,分析了取决于氧化物结构特征的界面现象的某些方面。比表面积S_(BET,X)与SBET,N2之比(X是有机吸附物)从吸附在无定形SA8(在200°C下脱气)的己烷的0.68变为吸附在结晶氧化铝(脱气)上的乙腈的1.85在900°C下)。由于取向,横向相互作用以及吸附在氧化物表面上的分子的吸附压缩的变化,这些变化相对较大。在具有较大表面粗糙度和亲水性的较大初级纳米颗粒中,对于二氧化钛或/和氧化铝相具有较高结晶度的混合氧化物,观察到较大的S_(BET,X)/ SBET,N2值。极性吸附物可以改变氧化物纳米颗粒聚集体的结构,进而影响吸附测量的结果。

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