首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Electronic and optical properties of functionalized carbon chains with the localized Hartree-Fock and conventional Kohn-Sham methods
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Electronic and optical properties of functionalized carbon chains with the localized Hartree-Fock and conventional Kohn-Sham methods

机译:使用局部Hartree-Fock和传统Kohn-Sham方法的功能化碳链的电子和光学性质

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摘要

The electronic and optical properties of extended functionalized carbyne chains, polyynes and cumulenes, are investigated with the localized Hartree-Fock method, with conventional Kohn-Sham methods, and with the Hartree-Fock method. It is found that even for very long polyynes the carbon-carbon bond lengths within a polyyne alternate while for long cumulenes no carbon-carbon bond length alternation occurs. Polyynes exhibit a finite HOMO-LUMO gap even if they become very long while cumulenes are found to become metallic in the limit of long chain lengths. The geometry and the electro-optical properties of polyynes cannot be influenced significantly by simple sp-sigma-bonded end groups. The optically active (1)Sigma(u)(+) <-- X(1)Sigma(g)(+) electronic transition in polyynes is investigated by time-dependent density-functional theory (TDDFT). The known systematic underestimation of excitation energies in large chain-like systems by TDDFT methods is also found for the systems considered here. Deficiencies in the commonly used exchange-correlation kernels are identified as the main source of this shortcoming of TDDFT methods. Unphysical Coulomb self-interactions present in conventional Kohn-Sham potentials seem to not contribute significantly to the problem. (C) 2004 Elsevier B.V. All rights reserved.
机译:使用局部Hartree-Fock方法,传统的Kohn-Sham方法以及Hartree-Fock方法研究了扩展的功能化碳炔链,多炔和cumulenes的电子和光学性质。发现即使对于很长的多炔,多炔内的碳-碳键长也是交替的,而对于长的对苯三酚,不会发生碳-碳键长的交替。即使在很长的时间内,聚炔也显示出有限的HOMO-LUMO间隙,而在长链长度的限制下,聚对苯二甲醚却变成了金属。简单的sp-sigma键合端基不能明显影响多炔的几何形状和电光性能。通过时间依赖的密度泛函理论(TDDFT)研究了聚炔中的光学活性(1)Sigma(u)(+)<-X(1)Sigma(g)(+)电子跃迁。对于此处考虑的系统,还发现了通过TDDFT方法对大型链状系统中的激发能进行系统已知的低估。常用的交换相关内核中的缺陷被认为是TDDFT方法这一缺点的主要根源。传统的Kohn-Sham势中存在的非物理库仑自相互作用似乎并没有对这一问题做出重大贡献。 (C)2004 Elsevier B.V.保留所有权利。

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