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Photopolymerization kinetic studies of UV-curable sulfur-containing difunctional acrylate monomers using photo-DSC

机译:使用光DSC的可紫外固化的含硫双官能丙烯酸酯单体的光聚合动力学研究

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摘要

We synthesized UV-curable difunctional sulfur-containing thioacrylate and thiourethane acrylate with high refractive indices. The monomer structures were confirmed by nuclear magnetic resonance (NMR) spectroscopy and Fourier transform infrared spectroscopy (FTIR). The photopolymerization kinetics of 3,3'-thiobis(1-(phenylthio)propane-3,2-diyl) diacrylate (SMDA) and 4,12-dioxo-6,10-bis(phenylthiomethyl)-3,13-dioxa-8-thia-5,11-diazapentadecane-1,15-diyl diacrylate (SMUA) were investigated by photo-differential scanning calorimetry (photo-DSC). The effects of various parameters such as the UV intensity, temperature, photoinitiator concentration, and the type of initiator were evaluated. In SMDA, as the temperature and light intensity increased, the peak maximum time tended to decrease. The conversion increased with increasing temperature up to 60 A degrees C and light intensity up to 20 mW/cm(2). The highest polymerization conversion was achieved with a PI concentration of 2.5% (w/w) with BK-6 as the PI. In SMUA, the rate of photopolymerization reached to the maximum value at 60 A degrees C and 20 mW/cm(2). For the PI concentration, the maximum conversion and polymerization rate constant were the highest with 2.5% (w/w). Also the highest conversion of polymerization was achieved using HP-8 as the PI. The activation energies of SMDA and SMUA were 3.95 and 36.01 kJ/mol, respectively.
机译:我们合成了具有高折射率的可紫外线固化的双官能含硫硫代丙烯酸酯和硫代氨基甲酸酯丙烯酸酯。通过核磁共振(NMR)光谱和傅里叶变换红外光谱(FTIR)确认单体结构。 3,3'-硫代双(1-(苯硫基)丙烷-3,2-二基)二丙烯酸酯(SMDA)和4,12-二氧代-6,10-双(苯硫基甲基)-3,13-二氧杂-的光聚合动力学通过光差扫描量热法(photo-DSC)研究了8-thia-5,11-diazapentadecane-1,15-diyl diacrylate(SMUA)。评估各种参数的影响,例如紫外线强度,温度,光引发剂浓度和引发剂类型。在SMDA中,随着温度和光强度的增加,最大峰值时间趋于减少。随着温度升高到60 A摄氏度和光强度达到20 mW / cm(2),转换率也增加了。以BK-6作为PI,PI浓度为2.5%(w / w)时,可获得最高的聚合转化率。在SMUA中,光聚合速率在60 A摄氏度和20 mW / cm(2)时达到最大值。对于PI浓度,最大转化率和聚合速率常数最高,为2.5%(w / w)。使用HP-8作为PI,也可以实现最高的聚合转化率。 SMDA和SMUA的活化能分别为3.95和36.01 kJ / mol。

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