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alpha-carbonyl substituent effect on the lifetimes of triplet 1,4-biradicals from Norrish-Type-II reactions

机译:α-羰基取代基对来自Norrish-Type-II反应的三重态1,4-双自由基的寿命的影响

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Triplet 1,4-biradicals were generated by Norrish-Type-II hydrogen transfer from alpha-heteroatom-substituted beta-branched butyrophenones 1-6 and detected by laser flash absorption measurements. For three oxy-substituted compounds 2-4 (R-alpha = OH, OCOMe, OCOOEt) comparable lifetimes were determined in acetonitrile (roughly 1.5 mu s). In benzene, divergent trends were observed: for the hydroxy compound 2 a lower lifetime of 790 ns was determined, whereas for 3 and 4 the lifetimes increased to 4.9 mu s. Photolyses of the a-amino-substituted compounds 1 and 6 resulted in transient species with significant lower lifetimes (for 1 160 ns in benzene and 450 ns in acetonitrile; for 6 < 100 ns in both solvents). The mesyloxy substrate 5 undergoes rapid C-O bond cleavage upon photolysis and no transient triplet species were detected. Computational (UB3LYP/6-31G* and natural don orbital (NBO) analyses) results supported the assumption of a negative hyperconjugative interaction strongly stabilizing alpha-oxy-substituted over alpha-amino-substituted radicals.
机译:三重态1,4-双自由基是由Norrish-Type-II氢从α-杂原子取代的β-支化丁苯酮1-6转移生成的,并通过激光闪光吸收测量进行检测。对于三种氧基取代的化合物2-4(R-alpha = OH,OCOMe,OCOOEt),在乙腈中的可比寿命得以确定(约1.5μs)。在苯中,观察到了不同的趋势:对于羟基化合物2,确定了较低的790 ns寿命,而对于3和4,则将其寿命提高至4.9μs。 α-氨基取代的化合物1和6的光解会导致具有明显较低寿命的瞬态物质(在苯中为1 160 ns,在乙腈中为450 ns;在两种溶剂中为6 <100 ns)。甲氧基氧基底物5在光解时经历快速的C-O键裂解,并且未检测到瞬时三重态物质。计算(UB3LYP / 6-31G *和自然唐轨道(NBO)分析)的结果支持以下假设:负超共轭相互作用可比α-氨基取代的基团更稳定α-氧基。

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