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Chromium-containing Organometallic Self-organized Materials for Nanophotonics

机译:含铬的有机金属自组织材料用于纳米光源

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Novel non-linear optical polymeric film-producing nanocomposites based on bis(arene)chromium complexes incorporated into CN-containing matrices have been developed. Measurements by the spectrally resolved two-beam coupling method with a femtosecond range of pulse widths (central wavelength 795-800 nm) confirmed that the test composites exhibited a significant cubic nonlinear optical susceptibility of the ultra-fast electronic type. An open aperture Z-scan of the polymer film at 1550 nm showed a value of 9 × 10{sup}(-19) cm{sup}3 W{sup}(-2) for the three-photon absorption coefficient. The electro-optical measurements of the polymer composite showed a high electro-optical response (r{sub}33·n{sup}3=4.245 pm V{sup}(-1) at modulation frequency 210 Hz and poling DC voltage 2.16 V). A significant enhancement of the signals with a decrease in modulation frequency was observed consistent with an essential contribution of orientation effects to the electro-optical response. The measurements in the absence of external electrical fields showed a natural anisotropy resulting from self-organization taking place during the film formation process as confirmed by electron diffraction studies. A single Cr-C distance was found in the EXAFS data refinement, showing that the arene rings are parallel and symmetric as in bis(benzene)chromium.
机译:已经开发出基于掺入CN基质的双(芳烃)铬络合物的新型非线性光学聚合物薄膜纳米复合材料。通过光谱分辨的双光束耦合方法测量,具有脉冲宽度的飞秒范围(中央波长795-800nm),确认测试复合材料表现出超快速电子类型的显着立方体非线性光学磁化率。在1550nm处的聚合物膜的开口孔径Z-扫描显示为三光子吸收系数的值为9×10 {sup}(-19)cm {sup} 3 w {sup}( - 2)。聚合物复合物的电光测量结果显示了高电光响应(R {Sub} 33·n {sup} 3 = 4.245mm v}(-1),在调制频率210 Hz处和极化直流电压2.16 V )。观察到具有调制频率降低的信号的显着增强,其一致地具有取向效应对电光响应的基本贡献。在没有外部电场的情况下的测量显示了由电子衍射研究证实的膜形成过程中发生的自组织发生的自然各向异性。在EXAFS数据细化中发现了单个CR-C距离,表明芳烃环是双(苯)铬的平行和对称的。

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