Fukui Hitoshi, Takamuku Shota, Yamada Taishi, Fukuda Kotaro, Takebayashi Taku, Shigeta Yasuteru, Kishi Ryohei, Champagne Benoît, Nakano Masayoshi
Department of Materials Engineering Science, Graduate School of Engineering Science, Osaka University , Toyonaka, Osaka 560-8531, Japan.
Inorg Chem. 2014 Aug 18;53(16):8700-7. doi: 10.1021/ic501334p. Epub 2014 Jul 24.
Using the long-range corrected spin-unrestricted density functional theory (LC-UBLYP) method, we have investigated the longitudinal third-order nonlinear optical (NLO) properties, i.e., the second hyperpolarizabilities γ of open-shell singlet one-dimensional (1D) extended metal atom chain (EMAC) systems, chromium(II) chains Cr(II)2n (n = 1-4), with different metal-metal bond lengths from the viewpoint of the open-shell character dependences of each d orbital contribution (dσ, dπ, dδ) to γ and of the chain-length dependence of γ. It turns out that the chain length dependences of the open-shell characters of dπ and dδ orbitals at any metal-metal bond length are negligible, while the dσ open-shell character decreases as a function of chain length. The systems display bell-shaped behaviors of γ as a function of the metal-metal bond length, in which the γ values attain maxima for intermediate dσ open-shell character. The maximum γ value (γmax) exhibits remarkable enhancement as a function of chain length. It is also found that the bond length alternation (BLA) significantly affects the γ values and their chain-length dependences. The present results provide the guiding principles for designing transition-metal complexes with open-shell singlet 1D metallic chains exhibiting large third-order optical nonlinearity.
采用长程校正自旋非限制密度泛函理论(LC-UBLYP)方法,我们从每个d轨道贡献(dσ、dπ、dδ)对γ的开壳层特征依赖性以及γ的链长依赖性的角度,研究了开壳层单重态一维(1D)扩展金属原子链(EMAC)体系,即具有不同金属-金属键长的铬(II)链Cr(II)2n(n = 1 - 4)的纵向三阶非线性光学(NLO)性质,即二阶超极化率γ。结果表明,在任何金属-金属键长下,dπ和dδ轨道的开壳层特征的链长依赖性均可忽略不计,而dσ开壳层特征随链长增加而减小。这些体系的γ随金属-金属键长呈现钟形行为,其中γ值在中间dσ开壳层特征时达到最大值。最大γ值(γmax)随链长显著增强。还发现键长交替(BLA)对γ值及其链长依赖性有显著影响。目前的结果为设计具有开壳层单重态1D金属链且表现出大三阶光学非线性的过渡金属配合物提供了指导原则。