首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Electronic structure of perovskite-type YBRh_3: X-ray photoelectron spectroscopy and ab initio band calculations
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Electronic structure of perovskite-type YBRh_3: X-ray photoelectron spectroscopy and ab initio band calculations

机译:钙钛矿型YBRh_3的电子结构:X射线光电子能谱和从头算谱带计算

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The perovskite structure type YBRh_3 was synthesized by the arc melting method. Its electronic structure was studied by XPS and ab initio band calculations. The chemical shifts of the Y and Rh 3d levels from the elements were negative. The experimental and calculated valence band XPS coincided well with each other. The band calculation indicated that the metallic behavior of the compound original from the Rh 4d electrons. The atomic distance between Y and Rh is 93 percent of the sum of the radii of the elements. The electron density has a maximum between the Y and Rh atoms, and the distance between the maximum point and center of the Y atom is 77 percent of its atomic radius. This indicates that charge transfer occurs from Y to Rh. The nearly equal electronegativities of B and Rh result in a covalent bond between them, which is shown as an asymmetric electron distribution in the circumference of the B and Rh atoms. The covalent bond results from hybridization of the B 2p and Rh 4d levels.
机译:通过电弧熔化法合成钙钛矿结构类型YBRh_3。通过XPS和从头算带计算研究了其电子结构。 Y和Rh 3d元素的化学位移为负。实验和计算的价带XPS彼此重合。谱带计算表明该化合物的金属行为源自Rh 4d电子。 Y和Rh之间的原子距离是元素半径总和的93%。电子密度在Y和Rh原子之间具有最大值,并且Y原子的最大点和中心之间的距离是其原子半径的77%。这表明电荷发生从Y到Rh的转移。 B和Rh几乎相等的电负性会导致它们之间的共价键,这表现为B和Rh原子周围的电子分布不对称。共价键由B 2p和Rh 4d水平的杂交产生。

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