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首页> 外文期刊>Journal of the American Chemical Society >Ultralarge Hyperpolarizability Twisted π-Electron System Electro-Optic Chromophores: Synthesis, Solid-State and Solution-Phase Structural Characteristics, Electronic Structures, Linear and Nonlinear Optical Properties, and Computational Studies
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Ultralarge Hyperpolarizability Twisted π-Electron System Electro-Optic Chromophores: Synthesis, Solid-State and Solution-Phase Structural Characteristics, Electronic Structures, Linear and Nonlinear Optical Properties, and Computational Studies

机译:超大型超极化扭曲π电子系统发色团:合成,固态和固溶体相结构特征,电子结构,线性和非线性光学性质以及计算研究

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This contribution details the synthesis and chemical/physical characterization of a series of unconventional twisted π-electron system electro-optic (EO) chromophores. Crystallographic analysis of these chromophores reveals large ring-ring dihedral twist angles (80-89°) and a highly charge-separated zwitterionic structure dominating the ground state. NOE NMR measurements of the twist angle in solution confirm that the solid-state twisting persists essentially unchanged in solution. Optical, IR, and NMR spectroscopic studies in both the solution phase and solid state further substantiate that the solid-state structural characteristics persist in solution. The aggregation of these highly polar zwitterions is investigated using several experimental techniques, including concentration-dependent optical and fluorescence spectroscopy and pulsed field gradient spin-echo (PGSE) NMR spectroscopy in combination with solid-state data. These studies reveal clear evidence of the formation of centrosymmetric aggregates in concentrated solutions and in the solid state and provide quantitative information on the extent of aggregation. Solution-phase DC electric-field-induced second-harmonic generation (EFISH) measurements reveal unprecedented hyperpolarizabilities (nonresonant μβ as high as -488 000 x 10~(-48) esu at 1907 nm). Incorporation of these chromophores into guest-host poled polyvinylphenol films provides very large electro-optic coefficients (r_(33)) of ~330 pm/V at 1310 nm. The aggregation and structure-property effects on the observed linearonlinear optical properties are discussed. High-level computations based on state-averaged complete active space self-consistent field (SA-CASSCF) methods provide a new rationale for these exceptional hyperpolarizabilities and demonstrate significant solvation effects on hyperpolarizabilities, in good agreement with experiment. As such, this work suggests new paradigms for molecular hyperpolarizabilities and electro-optics.
机译:这项贡献详细介绍了一系列非常规的扭曲π电子系统电光(EO)生色团的合成和化学/物理表征。这些生色团的晶体学分析表明,大的环-环二面角(80-89°)和高度分离的两性离子结构占据了基态。溶液中扭曲角的NOE NMR测量证实,固态扭曲在溶液中基本保持不变。在溶液相和固态中的光学,IR和NMR光谱研究进一步证实了固态结构特征在溶液中持续存在。使用几种实验技术研究了这些高极性两性离子的聚集,包括浓度依赖型光学和荧光光谱,脉冲场梯度自旋回波(PGSE)NMR光谱结合固态数据。这些研究揭示了在浓溶液和固态中形成中心对称聚集体的明确证据,并提供了有关聚集程度的定量信息。溶液相直流电场诱导的第二谐波产生(EFISH)测量显示出前所未有的超极化率(在1907 nm处的非共振μβ高达-488 000 x 10〜(-48)esu)。将这些生色团结合到客体-宿主极化的聚乙烯基苯酚膜中可在1310 nm处提供约330 pm / V的非常大的电光系数(r_(33))。讨论了聚集和结构性质对观察到的线性/非线性光学性质的影响。基于状态平均完整活动空间自洽场(SA-CASSCF)方法的高级计算为这些异常的超极化性提供了新的原理,并证明了对超极化性的显着溶剂化作用,与实验吻合得很好。这样,这项工作为分子超极化和电光学提出了新的范例。

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