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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Electronic Properties and Reactivity of Simulated Fe~(3+) and Cr~(3+) Substituted a-Al2O3 (0001) Surface
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Electronic Properties and Reactivity of Simulated Fe~(3+) and Cr~(3+) Substituted a-Al2O3 (0001) Surface

机译:模拟的Fe〜(3+)和Cr〜(3+)取代的a-Al2O3(0001)表面的电子性质和反应活性

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摘要

Metal oxide-based minerals naturally contain transition metal impurities isomorph-ically substituted into the structure that can alter the structural and electronic properties as well as the reactivity of these metal oxides. Natural a-Al2O3 (corundum) can contain up to 9.17% (w/w) Fe2O3 and 1.81% (w/w) of Cr2O3 Here we report on changes in the structural and electronic properties of undoped and doped a-Al2O3 (0001) surfaces using periodic density functional theory (DFT) methods with spin unrestricted B3LYP functional and a local atomic basis set. Both structural and electronic properties are altered upon doping. Implications for doping effects on photochemical processes are discussed. As metal oxides are major components of the environment, including atmospheric mineral aerosol, DFT was also used to study the effect of transition metal impurities on gas/surface interactions of a model acidic atmospheric gas molecule, carbon monoxide (CO). The theoretical results indicated that the presence of Fe~(3+) and Cr~(3+) impurities substituted on the outer layer of natural corundum surfaces reduces the propensity toward CO adsorption relative to the undoped surface. However, CO-surface interactions resemble that of bulk a-Al2O3 when the impurity is substituted below the first surface layer. The presence and location of the mineral dopant were found to significantly alter the structural and electronic properties and gas/surface interactions studied here.
机译:基于金属氧化物的矿物自然包含同构地取代入结构的过渡金属杂质,这些杂质可以改变这些金属氧化物的结构和电子性能以及反应性。天然a-Al2O3(刚玉)可以包含高达9.17%(w / w)的Fe2O3和1.81%(w / w)的Cr2O3在这里我们报告未掺杂和掺杂的a-Al2O3的结构和电子性质的变化(0001)表面使用周期性密度泛函理论(DFT)方法,具有自旋不受限制的B3LYP泛函和局部原子基集。掺杂会同时改变结构和电子特性。讨论了掺杂对光化学过程的影响。由于金属氧化物是环境的主要成分,包括大气中的矿物气溶胶,因此DFT还用于研究过渡金属杂质对模型酸性大气气体分子一氧化碳(CO)的气体/表面相互作用的影响。理论结果表明,在天然刚玉表面的外层上取代的Fe〜(3+)和Cr〜(3+)杂质的存在降低了相对于未掺杂表面的CO吸附倾向。但是,当在第一表面层下方取代杂质时,CO表面相互作用类似于块状a-Al2O3的相互作用。发现矿物掺杂剂的存在和位置会显着改变此处研究的结构和电子性能以及气体/表面相互作用。

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