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首页> 外文期刊>Polymer Degradation and Stability >Photochemistry and photoinduced chemical crosslinking activity of acrylated prepolymers by several commercial type I far UV photoinitiators
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Photochemistry and photoinduced chemical crosslinking activity of acrylated prepolymers by several commercial type I far UV photoinitiators

机译:几种市售I型远紫外光引发剂对丙烯酸酯化预聚物的光化学和光诱导化学交联活性

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Some of the most important commercial type I far UV photoinitiators have been analysed by various spectroscopic techniques to evaluate the relationship between their photophysical properties and photoinitiation activity for the photocrosslinking of commer- cial acrylated monomers. The type of electronic transitions occurring upon absorption of light are established via UV spectroscopy. Phosphorescence spectroscopy has also been used to study their triplet energies and lifetimes and phosphorescence quantum yields. Microsecond flash photolysis has been undertaken to determine the nature of the free radical (benzoyl radical) intermediates. The free radical intermediate decay kinetics of the different photoinitiators have also been determined, as well as the first- and second- order rate constants, the transient radical absorptions and radical lifetimes. Photocrosslinking studies have been undertaken by real time infrared spectroscopy (RTIR) at different photoinitiator concentrations in the presence and absence of oxygen using a reactive diluent monomer. Pendulum hardness measurements were also carried out to correlate the film hardness properties with the kinetic results obtained with RTIR. Analysis of the data shows that whilst type I initiator photoactivity is predominantly dependent upon the absorption maxima of the chromophore, structural influences play an important role in controlling the formation of benzoyl radical intermediates. Triplet lifetimes are very short-lived (< 10 ms), indicative of a predominantly it n-π* low lying triplet state. Photochemical crosslinking
机译:一些最重要的商业I型远紫外光引发剂已通过各种光谱技术进行了分析,以评估其光物理性质与商业丙烯酸酯单体光交联的光引发活性之间的关系。吸收光时发生的电子跃迁的类型是通过紫外光谱确定的。磷光光谱法也已经用于研究其三重态能量和寿命以及磷光量子产率。已经进行了微秒的快速光解以确定自由基(苯甲酰基自由基)中间体的性质。还已经确定了不同光引发剂的自由基中间衰变动力学,以及一阶和二阶速率常数,瞬态自由基吸收和自由基寿命。通过使用反应性稀释单体在有氧和无氧条件下,通过实时红外光谱(RTIR)在不同的光引发剂浓度下进行了光交联研究。还进行了摆锤硬度测量,以将薄膜硬度特性与RTIR获得的动力学结果相关联。数据分析表明,虽然I型引发剂的光活性主要取决于生色团的吸收最大值,但结构影响在控制苯甲酰基自由基中间体的形成中起着重要作用。三重态的寿命非常短(<10 ms),表明主要是n-π*低位三重态。光化学交联

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