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A Theoretical Study on the Electronic Structure and Floatability of Rare Earth Elements (La, Ce, Nd and Y) Bearing Fluorapatite

机译:含氟磷灰石稀土元素(La,Ce,Nd和Y)的电子结构和可浮性的理论研究

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Calcium atoms are often replaced by rare earth elements (REEs) in the lattice of fluorapatite (Ca 10 F 2 (PO 4 ) 6 ), making the phosphate ore an important potential rare earth resource. In this paper, the electronic properties of REEs (La, Ce, Nd and Y) bearing fluorapatite crystals have been investigated by density functional theory. Results of calculation indicated that the existence of REEs increased the cell parameters of fluorapatite in varying degrees. The REEs substitution made the Fermi level of fluorapatite to move to higher energy levels, making it easier to accept electrons. Except for Y, all the other REEs (La, Ce and Nd) showed that the electronic state mainly exists in the valence band. The Fermi level of REEs were mainly contributed by La5d, Ce4f, Nd4f and Y4d, respectively. The Mulliken values of REE–F and REE–O bonds in REEs-bearing fluorapatites were larger than those of Ca–F and Ca–O bonds in the perfect crystal, and the values of Y–F and Y–O bonds were the largest. The results of interaction between fluorapatite and oleic acid by frontier molecular orbital analysis suggested that the substitution of REEs can improve the reactivity of fluorapatite with oleic acid.
机译:钙原子经常被氟磷灰石(Ca 10 F 2(PO 4)6)的晶格中的稀土元素(REE)取代,这使磷酸盐矿石成为潜在的重要稀土资源。本文通过密度泛函理论研究了含氟磷灰石的稀土元素(La,Ce,Nd和Y)的电子性质。计算结果表明,稀土元素的存在不同程度地增加了氟磷灰石的细胞参数。 REEs的取代使氟磷灰石的费米能级移动到更高的能级,使其更易于接受电子。除Y外,其他所有稀土元素(La,Ce和Nd)均表明电子态主要存在于价带中。稀土元素的费米能级分别由La5d,Ce4f,Nd4f和Y4d贡献。含REEs的氟磷灰石中REE–F和REE–O键的Mulliken值大于完美晶体中Ca–F和Ca–O键的Mulliken值,而Y–F和Y–O键的值最大。前沿分子轨道分析的结果表明,氟代磷灰石与油酸的相互作用表明,稀土元素的取代可以提高氟代磷灰石与油酸的反应性。

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