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Encapsulation and substitution of Fe in C12A7 (12CaO?7Al2O3)

机译:C12A7中Fe的封装和替代Fe(12cao?7al2O3)

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摘要

Framework modification by doping of Fe 3+ ions in C12A7 has been recently considered for tailoring its thermal, electronic, and optical properties. Here, we use density functional theory calculations to predict the thermodynamical stability and electronic structures of a single Fe atom encapsulated and substituted by both stoichiometric and electride forms of C12A7. In both forms, exoergic encapsulation is observed, and the resultant complexes exhibit magnetic behavior inferring that they are promising magnetic material candidates for spintronic devices. While the electride form of C12A7 transfers 0.86 e to Fe, only a small amount of charge (0.14 e ) is transferred from Fe to the cages in the stoichiometric form. Substitution of Fe for Al in both forms of C12A7 is endoergic, and the electride form is more favorable by 1.60 eV than the stoichiometric form. Both encapsulation and substitution introduce Fe sub-bands between the top of the valence band and the Fermi energy level, featuring them as promising materials in catalysis, optics, and electronics.
机译:最近考虑了C12A7中Fe 3+离子掺杂Fe 3+离子的框架修改,用于定制其热,电子和光学性质。这里,我们使用密度泛函理论计算来预测封装和由化学计量和电极形式的C12A7封装和取代的单一Fe原子的热力学稳定性和电子结构。在这两种形式中,观察到官果封装,所得复合物表现出磁性的推断,使它们是用于旋转式装置的磁性材料候选者。在C12A7转移0.86e至Fe的电极形式的同时,仅在化学计量形式中从Fe转移到笼中的少量电荷(0.14 e)。在两种形式的C12A7中取代Al的Fe是内锭,并且电极形式比化学计量形式更有利。封装和替代都在价带顶部和费米能量水平之间引入Fe子带,其具有作为催化作用,光学和电子产品的有希望的材料。

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