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Effect of Structure and Composition of Non-Stoichiometry Magnesium Aluminate Spinel on Water Adsorption

机译:非化学计量镁铝酸盐尖晶石对水吸附的影响

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摘要

MgAl O is used in humidity sensing and measurement, and as a catalyst or catalyst support in a wide variety of applications. For such applications, a detailed understanding of the surface properties and defect structure of the spinel, and, in particular, of the gas interactions at the spinel surface is essential. However, to the best of our knowledge, very limited experimental data regarding this subject is currently available. In this work, four spinel samples with an Al O to MgO ratio ( ) between 0.95 and 2.45 were synthesized and analyzed using X-ray photoelectron spectroscopy and water adsorption micro-calorimetry. The results showed that the spinel composition and its consequent defect structure do indeed have a distinct effect on the spinel-water vapor surface interactions. The adsorption behavior at the spinel-water interface showed changes that resulted from alterations in types and energetic diversity of adsorption sites, affecting both H O uptake and overall energetics. Furthermore, changes in composition following appropriate thermal treatment were shown to have a major effect on the reducibility of the spinel which enabled increased water uptake at the surface. In addition to non-stoichiometry, the impact of intrinsic anti-site defects on the water-surface interaction was investigated. These defects were also shown to promote water uptake. Our results show that by composition modification and subsequent thermal treatments, the defect structure can be modified and controlled, allowing for the possibility of specifically designed spinels for water interactions.
机译:MGAL O用于湿度传感和测量,以及在各种应用中的催化剂或催化剂载体。对于这些应用,对尖晶石的表面性质和缺陷结构的详细了解,特别是尖晶石表面的气体相互作用是必要的。然而,据我们所知,目前可获得关于该主题的非常有限的实验数据。在这项工作中,使用X射线光电子能谱和水吸附微量热量来合成并分析具有0.95和2.45之间的四个尖晶石样品。结果表明,尖晶石组合物及其随之作用的缺陷结构确实对尖晶石水蒸气表面相互作用具有明显的影响。尖晶石水界面的吸附行为显示出改变吸附位点的类型和能量多样性的变化,影响了H o吸收和整体能量。此外,显示适当热处理后的组合物的变化对尖晶石的再还原性具有重要作用,该尖晶石使得在表面上增加的水吸收增加。除了非化学计量之外,研究了内在抗位缺陷对水面相互作用的影响。还显示出这些缺陷来促进水吸收。我们的研究结果表明,通过组成改性和随后的热处理,可以改变和控制缺陷结构,允许专门设计用于水相互作用的尖晶石的可能性。

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