首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Multifrequency time-resolved electron paramagnetic resonance investigations after photolysis of phosphine oxide photoinitiators. Dependence of triplet mechanism chemically induced dynamic electron polarization on microwave frequency
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Multifrequency time-resolved electron paramagnetic resonance investigations after photolysis of phosphine oxide photoinitiators. Dependence of triplet mechanism chemically induced dynamic electron polarization on microwave frequency

机译:氧化膦光引发剂光解后的多频时间分辨电子顺磁共振研究。三重态机理化学诱导的动态电子极化对微波频率的依赖性

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Phosphinoyl radicals were produced in benzene solution by photolysis of three acylphosphine oxide photoinitiators, diphenyl-2,4,6-trimethylbenzoyl phosphine oxide (I), bis(2,6-dimethoxybenzoyl)-(2,4,4-trimethylpentyl) phosphine oxide (II), and bis(2,4,6-trimethylbenzoyl) phenylphospine oxide (III). The chemically induced dynamic electron polarization (CIDEP) of the radicals was measured by time-resolved electron paramagnetic resonance spectroscopy at different microwave frequencies/magnetic fields, in S- (2.8 GHz, 0.1 T), X- (9.7 GHz, 0.34 T), Q- (34.8 GHz, 1.2 T), and W-bands (95 GHz, 3.4 T). The CIDEP was found to be due to a triplet mechanism (TM) superimposed by a radical pair mechanism comprising ST0 as well as ST- mixing. Contributions of the different CIDEP mechanisms were separated, and the dependence of the TM polarization on microwave frequency was determined. It agrees well with the numerical solution of the relevant stochastic Liouville equation, which proves the TM theory quantitatively. The applicability of previous approximate analytical formulas for the TM polarization is discussed. Parameters of the excited triplet state of III were estimated from the dependence of the TM polarization on microwave frequency. They are zero-field splitting constant 0.169 cm(-1) <= D-ZFS <= 0.195 cm(-1), lifetime 40 ps <= tau(T) <= 200 ps, and initial population of its T-z spin sublevel 0.92 <= w(z) <= 1.
机译:在苯溶液中通过以下三种酰基膦氧化物光引发剂光解生成膦酰基自由基:二苯基-2,4,6-三甲基苯甲酰基氧化膦(I),双(2,6-二甲氧基苯甲酰基)-(2,4,4-三甲基戊基)氧化膦(II)和双(2,4,6-三甲基苯甲酰基)苯膦氧化物(III)。通过时间分辨电子顺磁共振波谱在不同的微波频率/磁场下,在S-(2.8 GHz,0.1 T),X-(9.7 GHz,0.34 T)下,通过化学计量测定自由基的化学诱导动态电子极化(CIDEP)。 ,Q-(34.8 GHz,1.2 T)和W波段(95 GHz,3.4 T)。发现CIDEP是由于三重态机理(TM)被包括ST0以及ST-混合的自由基对机理所叠加。分离了不同CIDEP机制的贡献,并确定了TM极化对微波频率的依赖性。与相关的随机Liouville方程的数值解吻合得很好,定量地证明了TM理论。讨论了先前近似解析公式对TM极化的适用性。 III的三重激发态的参数是根据TM极化对微波频率的依赖来估计的。它们是零场分裂常数0.169 cm(-1)<= D-ZFS <= 0.195 cm(-1),寿命40 ps <= tau(T)<= 200 ps,其Tz自旋子水平的初始种群为0.92 <= w(z)<= 1。

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