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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Calibration of the DFT/GGA+U Method for Determination of Reduction Energies for Transition and Rare Earth Metal Oxides of Ti, V, Mo, and Ce
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Calibration of the DFT/GGA+U Method for Determination of Reduction Energies for Transition and Rare Earth Metal Oxides of Ti, V, Mo, and Ce

机译:DFT / GGA + U方法的校准,用于确定Ti,V,Mo和Ce的过渡金属和稀土金属氧化物的还原能

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GGA+U calculation were performed for oxides of Ti, V, Mo, and Ce with the objective of establishing the best value of the parameter U_(eff) to use in order to match the calculated reduction and oxidation energies of each oxide with experimental values. In each case, the reaction involved the hydrogen reduction of an oxide to its next lower oxide and the formation of water. Our calculations show that the optimal value of U_(eff) required to match calculated and experimental values of the reaction energy are significantly different from those reported in the literature based on matching lattice parameters or electronic properties and that the use of these values of U_(eff) can result in errors in the calculated redox energies of over 100 kJ/mol. We also found that, when an element exhibits more than two oxidation states, the energy of redox reactions between different pairs of these states are described by slightly different values of U_(eff) .
机译:对Ti,V,Mo和Ce的氧化物进行了GGA + U计算,目的是确定要使用的最佳参数U_(eff)值,以使每种氧化物的还原能和氧化能与实验值相匹配。在每种情况下,反应都涉及将氧化物的氢还原成其下一个较低的氧化物并形成水。我们的计算表明,匹配计算出的和实验能量值所需的U_(eff)的最佳值与基于匹配晶格参数或电子性质的文献中报道的值显着不同,并且使用这些U_( eff)会导致计算出的氧化还原能量超过100 kJ / mol的误差。我们还发现,当元素表现出两个以上的氧化态时,这些状态的不同对之间的氧化还原反应能量由略有不同的U_(eff)值描述。

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