化学
电负性
多重态
原子轨道
非金属
主组元素
电子组态
原子物理学
块(置换群论)
硅
结晶学
电子
金属
离子
过渡金属
物理
谱线
核物理学
组合数学
数学
生物化学
天文
催化作用
有机化学
作者
Joseph B. Mann,Terry L. Meek,Eugene T. Knight,Joseph F. Capitani,Leland C. Allen
摘要
Configuration energies (CE) of the d-block elements (Groups 3−11) are electronegativities evaluated from the formula CE = (pεs + qεd)/(p + q). εs and εd are the multiplet-averaged one-electron energies of the s- and d-orbitals of atoms which are in the lowest energy of the configurations sndm and sn-1dm+1, and whose highest known oxidation state is (p + q). The orbital energies are obtained from spectroscopic data. Configuration energies generally increase across a row, with the highest values occurring at nickel, silver, and gold; all are lower than the CE of silicon, the least electronegative nonmetal (except for gold which has a CE equal to that of silicon). Down the groups configuration energies invariably decrease from the first row to the second row; for Groups 7−12, the third-row element has a CE higher than that of the second-row element, due to increasing relativistic stabilization of the 6s orbitals.
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