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Quantum yield of conversion of the photoinitiator camphorquinone

机译:光引发剂樟脑醌转化的量子产率

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The primary absorber in dental resins is the photoinitiator, which starts the photo polymerization process. We studied the quantum yield of conversion of camphorquinone (CQ), a blue light photoinitiator, in dental resin composites using a LED lamp (3M FreeLight) and a Quartz Tungsten Halogen (QTH) lamp (VIP) as the light curing units at five different irradi-ances. The molar extinction coefficient, ε_(459), of CQ was 46 ± 2 cm~(-1)/(mol/L) at 469 nm. The reciprocity of irradiance and exposure time holds for changes of CQ absorption coefficient, that is, irradiance x exposure time (=radiant exposure) = constant. Both LED and QTH lamps yielded the same curing threshold (the radiant exposure when CQ absorption drops to 1/e) and the same quantum yield conversion under different irradiances. In our dental resin formulation (0.7 wt.% CQ with reducing agents 0.35 wt.% dimethylaminoethyl methacrylate (DMAEMA) and 0.05 wt.% butylated hydroxytoluene (BHT)) the quantum yield was measured as 0.07 ± 0.01 CQ conversion per absorbed photon.
机译:牙科树脂中的主要吸收剂是光引发剂,它可以启动光聚合过程。我们研究了使用LED灯(3M FreeLight)和石英钨卤素(QTH)灯(VIP)作为光固化单元在5种不同的固化条件下,牙科树脂复合材料中樟脑醌(CQ)(蓝光光引发剂)的转化量子产率。辐照度。 CQ的摩尔消光系数ε_(459)在469 nm为46±2 cm〜(-1)/(mol / L)。辐照度和曝光时间的互易性适用于CQ吸收系数的变化,即辐照度x曝光时间(=辐射曝光)=常数。 LED和QTH灯都具有相同的固化阈值(当CQ吸收率降至1 / e时的辐射暴露)和在不同辐照度下的相同量子产率转换。在我们的牙科树脂配方中(0.7重量%CQ和还原剂0.35重量%甲基丙烯酸二甲氨基乙基酯(DMAEMA)和0.05重量%丁基化羟基甲苯(BHT)),量子产率被测量为每个吸收光子的0.07±0.01 CQ转化率。

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