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Synthesis of organic-inorganic hybrid azobenzene materials for the preparation of nanofibers by electrospinning

机译:电纺丝法制备纳米纤维的有机-无机杂偶氮苯材料的合成

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摘要

The new photochromic hybrid materials containing different mole fractions of highly photoactive 4-[(E)-[4-[ethyl(2-hydroxyethyl)amino]phenyl]azo]-N-(4-methylpyrimidin-2-yl)benzenesulfonamide (SMERe) were prepared by a low temperature sol-gel process. The guest-host systems with triethoxyphenylsilane matrix were obtained. These materials were used to form thin transparent films by a spin-coating technique. Then the ability of thin hybrid films to reversible trans-cis photoisomerization under illumination was investigated using ellipsometry and UV-Vis spectroscopy. The reversible changes of refractive index of the films under illumination were in the range of 0.005-0.056. The maximum absorption of these materials was located at 462-486 nm. Moreover, the organic-inorganic azobenzene materials were used to form nanofibers by electrospinning using various parameters of the process. The microstructure of electrospun fibers depended on sols properties (e.g. concentration and viscosity of the sols) and process conditions (e.g. the applied voltage, temperature or type of the collector) at ambient conditions. The morphology of obtained nanofibers was analyzed by an optical microscopy and scanning electron microscopy. In most instances, the beadless fibers were obtained. The wettability of the surface of electrospun fibers deposited on glass substrates was investigated.
机译:包含不同摩尔分数的高光活性4-[(E)-[4- [乙基(2-羟乙基)氨基]苯基]偶氮] -N-(4-甲基嘧啶-2-基)苯磺酰胺的新型光致变色杂化材料(SMERe )是通过低温溶胶-凝胶法制备的。获得了具有三乙氧基苯基硅烷基质的客体-主体体系。这些材料用于通过旋涂技术形成透明的薄膜。然后使用椭圆偏振光度法和紫外可见光谱研究了杂化薄膜在光照下可逆反式顺式光异构化的能力。膜在照明下的折射率的可逆变化在0.005-0.056的范围内。这些材料的最大吸收位于462-486 nm。此外,有机-无机偶氮苯材料用于通过静电纺丝使用各种工艺参数来形成纳米纤维。电纺纤维的微观结构取决于在环境条件下的溶胶性质(例如溶胶的浓度和粘度)和工艺条件(例如施加的电压,温度或集电器的类型)。通过光学显微镜和扫描电子显微镜分析获得的纳米纤维的形态。在大多数情况下,获得了无珠纤维。研究了沉积在玻璃基材上的电纺纤维表面的润湿性。

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