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A comparison of ground- and excited-state properties of gas phase and crystalline ruthenocene using density functional theory

机译:用密度泛函理论比较气相和结晶钌茂金属的基态和激发态性质

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The ground- and excited-state properties of both gas phase and crystalline ruthenocene, Ru(cp)(2), are investigated using density functional theory. A symmetry-based technique is employed to calculate the energies of the multiplet splittings of the singly excited triplet states. For the crystalline system, a Buckingham potential is introduced to-describe the intermolecular interactions between a given Ru(cp)(2) molecule and its first shell of neighbors. The overall agreement between experimental and calculated ground- and excited-state properties is very good as far as absolute transition energies, the Stokes shift and the geometry of the excited states are concerned. An additional energy lowering in the B-3(2) component of the 5a(1)' --> 4e(1)" excited state is obtained when-the pseudolinear geometry of Ru(cp)(2) is relaxed along the low-frequency bending vibration. (C) 1998 American Institute of Physics. [References: 36]
机译:使用密度泛函理论研究了气相和结晶钌茂金属Ru(cp)(2)的基态和激发态性质。基于对称性的技术用于计算单激发三重态的多重分裂的能量。对于晶体系统,引入了白金汉势以描述给定的Ru(cp)(2)分子与其相邻的第一壳之间的分子间相互作用。就绝对跃迁能量,斯托克斯位移和激发态的几何形状而言,实验和计算的基态和激发态性质之间的总体一致性非常好。当Ru(cp)(2)的伪线性几何沿低点松弛时,获得了5a(1)'-> 4e(1)“激发态的B-3(2)分量的额外能量降低频率弯曲振动。(C)1998美国物理研究所。[参考:36]

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