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首页> 外文期刊>Pigment & Resin Technology >Photochromic properties of 1[variant prime],3[variant prime],3[variant prime]-trimethyl-6-nitrospiro[2H-1-benzopyran-2,2[variant prime]-indoline] doped in PMMA and epoxy resin thin films
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Photochromic properties of 1[variant prime],3[variant prime],3[variant prime]-trimethyl-6-nitrospiro[2H-1-benzopyran-2,2[variant prime]-indoline] doped in PMMA and epoxy resin thin films

机译:PMMA和环氧树脂中掺杂的1 [变质],3 [变质],3 [变质]-三甲基-6-硝基螺[2H-1-苯并吡喃-2,2 [变质]-二氢吲哚]的光致变色特性电影

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Purpose - The purpose of this paper is to evaluate the photochromic performance of photochromic compounds in polymer matrices. Design/methodology/approach - The poly(methyl methacrylate) (PMMA) and epoxy resin doped with photochromic spirobenzopyran were prepared and the effects of ultraviolet (UV) irradiation were studied using spectrophotometer. The reversible reaction was effected using white light. Photochemical fatigue resistance of these films was also studied. Findings - Irradiation of colourless 1[variant prime],3[variant prime],3[variant prime]-trimethyl-6-nitrospiro[2H-1-benzopyran-2,2[variant prime]-indoline] spiropyran (SP) doped in PMMA and epoxy resin with UV light (366 nm) results in the formation of an intense purple-red coloured zwitterionic photomerocyanine (PMC). The reverse reaction was photochemically induced by irradiation with white light. Photocolouration of SP doped in PMMA follows a first-order rate equation (k=0.0011 s-1), while that doped in epoxy resin deviates from linearity. It was found that photobleaching follows a first-order equation in both matrices. The photobleaching rate constant of PMC in both matrices is the same and equals 0.0043 s-1. Spirobenzopyran doped in PMMA shows better fatigue resistance than that doped in epoxy resin. Research limitations/implications - The PMMA and epoxy resin polymers doped with photochromic spirobenzopyran described in the present paper were prepared and studied. The principle of study established can be applied to any type of polymer or to any type of photochromic compounds. Practical implications - The photochromic materials developed can be used for different applications, such as coatings and holography. Originality/value - The method developed may be used to enhance the performance of photochromic materials. Show less
机译:目的-本文的目的是评估光致变色化合物在聚合物基质中的光致变色性能。设计/方法/方法-制备了掺杂有光致变色螺并苯并吡喃的聚甲基丙烯酸甲酯(PMMA)和环氧树脂,并使用分光光度计研究了紫外线(UV)照射的效果。使用白光进行可逆反应。还研究了这些膜的耐光化学疲劳性。研究结果-掺杂无色1 [变质],3 [变质],3 [变质]-三甲基-6-硝基螺[2H-1-苯并吡喃-2,2 [变质]-二氢吲哚]螺吡喃(SP)在PMMA和环氧树脂中,紫外光(366 nm)会形成强烈的紫红色两性离子光变花青(PMC)。通过用白光照射光化学诱导逆反应。掺杂在PMMA中的SP的光致变色遵循一阶速率方程(k = 0.0011 s-1),而掺杂在环氧树脂中的SP的显色性偏离线性。发现在两个矩阵中光漂白遵循一阶方程。两种基质中PMC的光致漂白速率常数相同,等于0.0043 s-1。掺杂在PMMA中的螺并苯并吡喃比在环氧树脂中具有更好的抗疲劳性。研究局限/意义-制备并研究了本文所述的掺杂有光致变色螺并苯并吡喃的PMMA和环氧树脂聚合物。建立的研究原理可以应用于任何类型的聚合物或任何类型的光致变色化合物。实际意义-所开发的光致变色材料可用于不同的应用,例如涂料和全息照相。原创性/价值-开发的方法可用于增强光致变色材料的性能。显示较少

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