Gibbs G V, Spackman M A, Jayatilaka D, Rosso K M, Cox D F
Department of Geosciences, Materials Science, and Engineering and Mathematics, Virginia Tech, Blacksburg, Virginia 24061, USA.
J Phys Chem A. 2006 Nov 9;110(44):12259-66. doi: 10.1021/jp062992m.
For a variety of molecules and earth materials, the theoretical local kinetic energy density, G(r(c)), increases and the local potential energy density, V(r(c)), decreases as the M-O bond lengths (M = first- and second-row metal atoms bonded to O) decrease and the electron density, rho(r(c)), accumulates at the bond critical points, r(c). Despite the claim that the local kinetic energy density per electronic charge, G(r(c))/rho(r(c)), classifies bonded interactions as shared interactions when less than unity and closed-shell when greater, the ratio was found to increase from 0.5 to 2.5 au as the local electronic energy density, H(r(c)) = G(r(c)) + V(r(c)), decreases and becomes progressively more negative. The ratio appears to be a measure of the character of a given M-O bonded interaction, the greater the ratio, the larger the value of rho(r(c)), the smaller the coordination number of the M atom and the more shared the bonded interaction. H(r(c))/rho(r(c)) versus G(r(c))/rho(r(c)) scatter diagrams categorize the M-O bonded interactions into domains with the local electronic energy density per electron charge, H(r(c))/rho(r(c)), tending to decrease as the electronegativity differences for the bonded pairs of atoms decrease. The values of G(r(c)) and V(r(c)), estimated with a gradient-corrected electron gas theory expression and the local virial theorem, are in good agreement with theoretical values, particularly for the bonded interactions involving second-row M atoms. The agreement is poorer for shared C-O and N-O bonded interactions.
对于多种分子和地球物质,随着M - O键长(M = 与O键合的第一和第二周期金属原子)减小且电子密度ρ(r(c))在键临界点r(c)处积累,理论局部动能密度G(r(c))增加而局部势能密度V(r(c))减小。尽管有人声称,当每个电子电荷的局部动能密度G(r(c))/ρ(r(c))小于1时将键合相互作用分类为共享相互作用,大于1时为闭壳层相互作用,但发现该比值随着局部电子能量密度H(r(c)) = G(r(c)) + V(r(c))减小并逐渐变得更负而从0.5增加到2.5原子单位。该比值似乎是给定M - O键合相互作用特征的一种度量,比值越大,ρ(r(c))的值越大,M原子的配位数越小,键合相互作用的共享程度越高。H(r(c))/ρ(r(c))对G(r(c))/ρ(r(c))的散点图将M - O键合相互作用分类为不同区域,随着键合原子对的电负性差异减小,每个电子电荷的局部电子能量密度H(r(c))/ρ(r(c))趋于减小。用梯度校正电子气理论表达式和局部维里定理估算的G(r(c))和V(r(c))值与理论值吻合良好,特别是对于涉及第二周期M原子的键合相互作用。对于共享的C - O和N - O键合相互作用,吻合度较差。