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Influence of TiO{sub}2 on Second Harmonic Generation in Disperse Red -1 doped Organic-Inorganic Hybrid Thin Films

机译:TiO {Sub} 2对分散红色-1掺杂有机 - 无机杂交薄膜二次谐波产生的影响

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Disperse Red 1 (DR1) doped TiO{sub}2-SiO{sub}2 inorganic-organic hybrid polymers were prepared by an anhydrous sol-gel process and second harmonic generation (SHG) of the fundamental 1053nm in these polymeric thin films was measured using Maker-fringe method. The nonlinear optical activity of DR1 in the thin films was studied by corona poling at different temperature (from room temperature to 140°C), and the stability of SHG after switching off corona power was evaluated by analyzing the SHG decay dynamics. Experimental results showed that the stability of the SHG of DR1 significantly increases with the cross-linkage degree of the TiO{sub}2-SiO{sub}2 hybrid polymer network, and that the second harmonic coefficient d{sub}33 increases as the DR1 concentration increases. TiO{sub}2-doping can promote the polymerization of unsaturated C=C double bonds in the hybrid thin films during in-situ hot poling, enhancing the cross-linkage of the network of the hybrid material, and resulting in a great improvement of the stability of SHG. The excellent stability of second harmonic generation in the hybrid polymer thin films suggests that TiO{sub}2-doped inorganic-organic hybrid polymer is promising for chromophore doping for nonlinear optical applications.
机译:分散红色1(DR1)掺杂TiO {Sub} 2-SiO {亚} 2通过无水溶胶 - 凝胶工艺制备,并测量这些聚合物薄膜中的基本1053nm的二次谐波产生(SHG)使用Maker-Fringe方法。通过在不同温度(从室温至140℃)的电晕抛光中研究了薄膜中DR1的非线性光学活性,通过分析SHG衰减动态来评估SHG后SHG的稳定性。实验结果表明,DR1的SHG的稳定性随着TIO {SUB} 2-SIO {SUB} 2混合聚合物网络的交联度而显着增加,并且第二谐波系数D {SUB} 33增加DR1浓度增加。 TiO {Sub} 2掺杂可以在原位热抛光期间促进混合薄膜中的不饱和C = C双键的聚合,增强了混合材料网络的交联,并导致了巨大的改进SHG的稳定性。杂化聚合物薄膜中二次谐波产生的优异稳定性表明TiO {亚} 2掺杂的无机 - 有机杂化聚合物是对非线性光学应用的发色团掺杂有望。

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