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Thermally stable polyimide/silica hybrid: synthesis, characterization and optical nonlinearity

机译:热稳定的聚酰亚胺/二氧化硅杂种:合成,表征和光学非线性

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An intercalation nonlinear-optical (NLO) polyimide was synthesized based on the 3,3', 4,4'-Bisphenyltetracarboxylic (BPDA) and [(6-nitrobenzothiazole-2-yl)diazenyl]phenyl-1,3-diamine (NBADA). Then, hybrid polymer was synthesized by the sol-gel technique. FT-IR spectroscopy and ~(29)Si NMR were used to characterize the structure of the hybrid. The results revealed that Q~3, Q~4 and T~3 are the major microstructure elements in forming a network structure. The surface morphology, particle size, crystallinity and the thermal stability of the hybrid were investigated using scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD), thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC). DSC and TGA results showed that the glass transition temperature (T_g) and the decomposition temperature (Td) at 5% mass loss were 243, 359°C and 355, 456°C, respectively. These results showed that the hybrid material had excellent thermal stability than the pure polyimide. The electro-optic coefficients of nonlinear optical polyimide and hybrid were measured at the wavelength of 832 nm. The electro-optic coefficients were 22 and 19pm/V (poling voltage of 3.8KV, 210°C) and the values remained well (retained>93% for more than 100h). The results suggest that the materials have potential applications for high performance optical device.
机译:基于3,3',4,4'-双苯基四羧酸(BPDA)和[(6-硝基苯噻唑-2-基)二亚苯基-1,3-二胺(NBADA,合成嵌入非线性光学(NLO)聚酰亚胺。苯基-1,3-二胺(NBADA )。然后,通过溶胶 - 凝胶技术合成杂化聚合物。 FT-IR光谱和〜(29)Si NMR用于表征杂种的结构。结果表明,Q〜3,Q〜4和T〜3是形成网络结构的主要微观结构元件。使用扫描电子显微镜(SEM),透射电子显微镜(TEM),X射线衍射(XRD),热重分析(TGA)和差示扫描量热法研究了杂种的表面形态,粒度,结晶度和热稳定性和热稳定性DSC)。 DSC和TGA结果表明,玻璃化转变温度(T_G)和分解温度(TD)分别为243,359℃和355,456℃。这些结果表明,杂化材料具有优于纯聚酰亚胺的热稳定性优异。在832nm的波长下测量非线性光学聚酰亚胺和杂种的电光系数。电光系数为22且19 pm / d(抛光电压为3.8kV,210℃),值仍然很好(保留> 93%超过100h)。结果表明,材料具有高性能光学装置的潜在应用。

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