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Absolute Rate Constants for Hydrogen Atom Transfer from Tertiary Amides to the Cumyloxyl Radical. Evaluating the Role of Stereoelectronic Effects

机译:氢原子从叔酰胺转移至甲酰氧基自由基的绝对速率常数。评估立体电子效应的作用

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摘要

A time-resolved kinetic study of the hydrogen atom transfer (HAT) reactions from a series of alkanamides to the cumyloxyl radical (CumO•) was carried out. With N,N-dialkylformamides HAT preferentially occurs from the formyl C−H bond, while in N-formylpyrrolidine HAT mostly occurs from the ring α-C−H bonds. With the acetamides and the alkanamides almost exclusive HAT from the C−H bonds that are α to nitrogen was observed. The results obtained show that alignment between the C−H bond being broken and the amide π-system can lead to significant increases in the HAT rate constant (kH). This finding points toward the important role of stereoelectronic effects on the HAT reactivity and selectivity. The highest kH values were measured for the reactions of CumO• with N-acylpyrrolidines. These substrates have ring α-C−H bonds that are held in a conformation that is optimally aligned with the amide π-system, thus allowing for the\udrelatively facile HAT reaction. The lowest kH value was measured for the reaction of N,N-diisobutylacetamide, wherein the steric bulk associated with the N-isobutyl groups increases the energy barrier required to reach the most suitable conformation for HAT. The experimental results are well supported by the computed BDEs for the C−H bonds of the most representative substrates.
机译:进行了时间分辨动力学研究,研究了从一系列烷酰胺到枯基氧基(CumO•)的氢原子转移(HAT)反应。对于N,N-二烷基甲酰胺,HAT优先从甲酰基CH键出现,而在N-甲酰基吡咯烷中,HAT主要从环α-CH键出现。使用乙酰胺和链烷酰胺,几乎观察到从α到N的C H键中唯一的HAT。获得的结果表明,CH键断裂与酰胺π系统之间的对准可导致HAT速率常数(kH)显着增加。这一发现指出了立体电子效应对HAT反应性和选择性的重要作用。测量了CumO•与N-酰基吡咯烷的反应的最高kH值。这些底物具有保持与酰胺π系统最佳排列的构象的环α-CH键,因此允许HAT反应相对容易。测定了N,N-二异丁基乙酰胺的反应的最低kH值,其中与N-异丁基相关的空间体积增加了达到最合适的HAT构象所需的能垒。对于最具代表性的底物的C-H键,计算出的BDE很好地支持了实验结果。

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