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硼烷(B10H14)及其衍生物的卤化物离子配合物:二阶非线性光学性质的非共价电荷转移效应。

Halide ion complexes of decaborane (B10H14) and their derivatives: noncovalent charge transfer effect on second-order nonlinear optical properties.

机构信息

Department of Materials Engineering Science, Graduate School of Engineering Science, Osaka University, Toyonaka, Osaka 560-8531, Japan.

出版信息

J Phys Chem A. 2012 Feb 9;116(5):1417-24. doi: 10.1021/jp209385b. Epub 2012 Jan 25.

Abstract

Quantum molecular engineering has been performed to determine the second-order nonlinear optical (NLO) properties in different halo complexes of decaborane (B(10)H(14)) and their derivatives using the density functional theory (DFT) method. These decaborane halo complexes of X(-)@B(10)H(14) (X = F, Cl, Br, and I) are found to possess noncovalent charge transfer interactions. The static polarizability (α(0)) and first hyperpolarizability (β(0)) among these complexes increase by moving down the group from F to I, partly due to the increase in size of their anionic radii and the decrease in their electron affinities. A two-level approximation has been employed to investigate the origin of β(0) values in these halo complexes, which show very consistent results with those by the finite-field method. Furthermore, in the same line, two experimentally existing complexes, I(-)@B(10)H(14) and I(-)@2,4-I(2)B(10)H(12), are found to have considerably large β(0) values of 2859 and 3092 a.u., respectively, which are about three times larger than a prototypical second-order NLO molecule of p-nitroaniline, as reported by Soscun et al. [Int. J. Quantum Chem.2006, 106, 1130-1137]. Besides this, the special effects of solvent, counterion, and bottom substitutions have also been investigated. Interestingly, 2,4-alkali metal-substituted decaborane iodide complexes show remarkably large second-order NLO response with β(0) amplitude as large as 62436 a.u. for I(-)@2,4-K(2)B(10)H(12) complex, which are explained in terms of their transition energies, frontier molecular orbitals and electron density difference plots. Thus, the present investigation provides several new comparative insights into the second-order NLO properties of halo complexes of decaborane, which possess not only large first hyperpolarizabilities, but also high tunability to get a robustly large second-order NLO response by alkali metal substitution effects.

摘要

已进行量子分子工程研究,以使用密度泛函理论(DFT)方法确定不同十硼烷(B(10)H(14))及其衍生物的卤化物配合物的二阶非线性光学(NLO)性质。这些卤化物配合物 X(-)@B(10)H(14)(X = F、Cl、Br 和 I)被发现具有非共价电荷转移相互作用。这些配合物的静态极化率(α(0))和一阶超极化率(β(0))随着从 F 到 I 的基团向下移动而增加,部分原因是阴离子半径的增大和电子亲合能的降低。已采用二级近似方法来研究这些卤化物配合物中β(0)值的起源,该方法与有限场方法得到的结果非常一致。此外,在同一条线上,还研究了两个实验上存在的配合物,I(-)@B(10)H(14)和 I(-)@2,4-I(2)B(10)H(12),它们具有相当大的β(0)值,分别为 2859 和 3092 a.u.,约为 Soscun 等人报道的典型二阶 NLO 分子对硝基苯胺的三倍。[Int. J. Quantum Chem.2006, 106, 1130-1137]。除此之外,还研究了溶剂、抗衡离子和底部取代的特殊影响。有趣的是,2,4-碱金属取代的十硼烷碘化物配合物表现出非常大的二阶 NLO 响应,其β(0)幅度高达 62436 a.u.,对于 I(-)@2,4-K(2)B(10)H(12)配合物,这可以用它们的跃迁能、前沿分子轨道和电子密度差图来解释。因此,本研究提供了对十硼烷卤化物配合物的二阶 NLO 性质的几个新的比较见解,这些配合物不仅具有较大的一阶超极化率,而且通过碱金属取代效应还具有获得稳健的大二阶 NLO 响应的高可调节性。

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