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六羰基铬中d-d对称禁阻电子跃迁的强度

Intensity of d-d symmetry-forbidden electronic transition in Cr(CO)6.

作者信息

Rocha Alexandre B

机构信息

Instituto de Química, Departamento de Físico-Qímica, Universidade Federal do Rio de Janeiro, Cidade UniversitAria, CT Bloco A. Rio de Janeiro, 21941-909 Rio de Janeiro, Brazil.

出版信息

J Phys Chem A. 2007 May 31;111(21):4711-3. doi: 10.1021/jp070334b. Epub 2007 Apr 27.

Abstract

Absolute absorption intensities (oscillator strengths) are calculated for the d-d symmetry-forbidden transition in hexacarbonyl chromium. The vibronic coupling mechanism is taken into account in a way that represents an alternative to the traditional perturbative approach of Herzberg and Teller. In the so-called direct method, the electronic transition moment is directly expanded in a power series of the vibrational normal coordinates of suitable symmetry. In the present case, i.e., d-d ligand field transitions, or more specifically (1)A(1g) --> (1)T(1g) and (1)A(1g) --> (1)T(2g) transitions, the dipole selection rule is broken by vibronic interaction induced by normal modes that transform like T(1u) and T(2u) representations of the O(h) group. An analysis of the relative importance of normal modes in promoting electronic transitions is carried out.

摘要

计算了六羰基铬中d-d对称性禁戒跃迁的绝对吸收强度(振子强度)。考虑了振动-电子耦合机制,该机制代表了一种不同于传统的赫兹伯格和泰勒微扰方法的替代方法。在所谓的直接方法中,电子跃迁矩直接在具有适当对称性的振动简正坐标的幂级数中展开。在当前情况下,即d-d配体场跃迁,或更具体地说是(1)A(1g)→(1)T(1g)和(1)A(1g)→(1)T(2g)跃迁,偶极选择规则被由属于O(h)群T(1u)和T(2u)表示的简正模式诱导的振动-电子相互作用打破。对促进电子跃迁的简正模式的相对重要性进行了分析。

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