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Photorefractive and Nonlinear Optical Properties of Indium(III) Tetra( 15 - Crown- 5)Phthalocyaninate- Based Composites

机译:铟(III)四(15-Crown-5)酞菁基复合材料的光折变和非线性光学性质

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摘要

Photoelectric, nonlinear optical, and photorefractive properties of hybrid composite materials based on polyvinylcarbazole (PVK) and indium(IIl) 2,3,9,10,16,17,23,24-tetra(15-crown-5)phthalocyani-nate [(15C5)_4Pc]In(OH) are studied in detail. Field dependence of the quantum efficiency in a 7.8 um-thick layer containing 5 at % [(15C5)_4Pc]In(OH) is measured. The best approximation of the quantum efficiency with Onsager's equation corresponds to a quantum yield of thermalized electron-hole pairs φ_0 = 0.01 at initial separation /-0 = 9.8 A. Z-scan measurements in a nanosecond range showed that the electric susceptibility of [(15C5)_4Pc]In(OH) solution in tetrachloroethane (TCE) with a concentration of 7 x 10~(-4) mol/L is x~(3) = 1.34 x 10~9 esu. The maximum coupling gam coefficient found for the material composed of PVK and 5 wt % [(15C5)_4Pc]In(OH) at an electric-field intensity of 200 V/um is T = 80 cm~(-1), and the difference between the coupling gain and absorption coefficients is F - a = 70 cm"1. The dependence of the coupling gain coefficient on the intensity ratio of interfering beams 7 and 2 (P = Ix(Qt)/I2{Qi)) in a composite containing 3 wt % [(15C5)_4Pc]In(OH) is measured. An increase in P was attained by decreasing intensity of the signal beam I_2(0) at constant intensity of the pump beam I_1(0) = 0.15 W/cm~2 and E_0 = 214 V/um. Within the initial segment of the curve, the coupling gain coefficient increases from 30 to 60 cm~(-1); then, the coefficient drops almost to the initial value. The data obtained show that the composite materials studied can be used in practice for correcting faded images. The combined analysis of the results obtained and similar data for gallium and ruthenium tetra-15-crown-5-phthalocyaninate complexes revealed the regularities in the change of the quantum yield of thermalized electron-hole pairs and the photorefractive coupling gain coefficient in a series of com-plexing metals: gallium(III), ruthenium(II), and indium(III). An increase in the molecular weight of the central metal atom is found to result in a substantial decrease in F and φ_0 due to the increase in the spin-orbit coupling constant.
机译:基于聚乙烯咔唑(PVK)和铟(IIl)2,3,9,10,16,17,23,24-四(15-冠-5)酞菁酸酯的杂化复合材料的光电,非线性光学和光折变性能[(15C5)_4Pc] In(OH)进行了详细的研究。测量在包含5 at%[(15C5)_4Pc] In(OH)的7.8um厚层中量子效率的场依存性。用Onsager方程最好地近似量子效率,对应于初始间隔/ -0 = 9.8 A时热化电子-空穴对的量子产率φ_0=0.01。Z扫描测量在纳秒范围内显示[[(浓度为7 x 10〜(-4)mol / L的四氯乙烷(TCE)中的15C5)_4Pc] In(OH)溶液的x〜(3)= 1.34 x 10〜9 esu。在200 V / um的电场强度下,由PVK和5 wt%的[(15C5)_4Pc] In(OH)组成的材料的最大耦合gam系数为T = 80 cm〜(-1),耦合增益和吸收系数之间的差为F-a = 70 cm“ 1。耦合增益系数对光束7和2的强度比的依赖性(P = Ix(Qt)/ I2 {Qi))测量了含有3 wt%[(15C5)_4Pc] In(OH)的复合材料,通过在恒定强度的泵浦光束I_1(0)= 0.15 W /时降低信号光束I_2(0)的强度,使P增加cm〜2和E_0 = 214 V / um。在曲线的初始段内,耦合增益系数从30 cm〜(-1)增加到60 cm〜(-1);然后,该系数几乎下降到初始值。所研究的复合材料可在实践中用于校正褪色图像。对所得结果和四-15冠冕-5-酞菁镓和钌的类似数据进行综合分析配合物揭示了一系列复杂的金属(镓(III),钌(II)和铟(III))中热化电子-空穴对的量子产率和光折变耦合增益系数的变化规律。发现由于自旋轨道耦合常数的增加,中心金属原子的分子量的增加导致F和φ_0的显着降低。

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