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The aim of this work was the fabrication of cotton fabric with multifunctional properties such as photochromic, hydrophobicity, antibacterial, and ultraviolet (UV) blocking. In this regard, a mixture of silica nanoparticles with spirooxazine as a photochromic dye first applied on the cotton fabric, and then, the fabric surface was coated with an alkylsilane compound. The homogenous distribution of silica and silica/spirooxazine hybrid on the cotton fibers was established by field emission scanning electron microscopy, energy-dispersive X-ray spectroscopy, and X-ray mapping. X-ray diffraction patterns confirmed the amorphous nature of the hybrid on the treated cotton fabric. The photochromic effect of the fabrics was measured after 5-min sunlight irradiation. Other characteristics of treated fabrics, such as antibacterial activity, hydrophobic properties, and UV-blocking activity, were also assessed. The results indicated that adding silica nanoparticles to spirooxazine had a tangible effect on photochromic activity of treated cotton fabrics and its photochromic performance was higher than that of the photochromic dye. The fabric showed stable hydrophobicity with static water contact angle values of 141.2° ± 1°. Moreover, the coated cotton fabric demonstrated proper antibacterial properties and UV-blocking activity. 相似文献
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将2个9’-羟基吲哚啉螺萘并噁嗪衍生物(Ia、Ib),进一步以N,N’-二环己基碳二酰亚胺为脱水剂、4-二甲氨基吡啶为催化剂合成了2个9’-丙烯酰氧基吲哚啉螺萘并噁嗪衍生物(IIIa,IIIb)和2个9’-(α-呋喃丙烯酰氧基)吲哚啉螺萘并噁嗪衍生物(Va,Vb)。通过元素分析、^1HNMR和IR对产物的结构进行了表征。将化合物Ⅲa的乙醇溶液浸渍在脱脂棉上,经太阳光照射由无色变为蓝色;当脱脂棉移至阴暗处后,蓝色慢慢变淡消失。光致变色过程循环50次无异常发生,显示出良好的光致变色性能。 相似文献
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Two novel photochromic spirooxazines, SO 1 and SO 3, were successfully prepared and characterized by Fourier transform infrared spectroscopy (FTIR), 1H-NMR, and mass spectrometry with electrospray ionization (ESI-MS). SO 1 was doped and grafted with waterborne polyurethane (WPU) to afford D1-WPU and G1-WPU. D3-WPU was prepared by doping SO 3 with waterborne polyurethane. FTIR spectra indicated that SO 1 was grafted onto waterborne polyurethane successfully. Scanning electron microscopy proved that spirooxazines of D-WPU can be effectively dispersed in a waterborne polyurethane matrix, and spirooxazines of G-WPU are evenly distributed in the copolymer. The results showed that the light transmittance of modified waterborne polyurethane films decreased compared with pure waterborne polyurethane films, but the water resistance and tensile strength were better. Ultraviolet–visible spectra demonstrated that the thermal stability of spirooxazine derivatives improved significantly after being modified. The fading rate constant of the D3-WPU film (k = 0.0079 s-1) during the discoloration process decreased 9.77 times in contrast to SO 3 in ethanol, which showed that the thermal stability of spirooxazine in WPU film was obviously enhanced. © 2018 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019 , 136, 47067. 相似文献
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合成了1,3,3—三甲基—9′—羟基螺[2H—吲哚—2,3′—[3H]萘并[2,1—b][1,4]噁嗪]光致变色化合物,通过红外光谱分析和元素分析对其结构进行了简单表征。制备了螺噁嗪/PUI-112脂肪族聚氨酯光致变色膜和螺噁嗪/聚丙烯酸丁酯光致变色膜,对其光致变色性质进行了检测和对比,筛选出了较佳的黏合剂。通过先制备出光致变色色浆,后采用类似于颜料印花的方法将其印在毛织物上,制得光致变色毛织物,对其光致变色性质进行检测,获得了很好的光致变色效果;测定织物的耐摩擦色牢度和耐洗色牢度,确定了最佳工艺条件。 相似文献