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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Electron transfer vs. proton-coupled electron transfer as the mechanism of reaction between amino acids and triplet-excited benzophenones revealed by time-resolved CIDNP
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Electron transfer vs. proton-coupled electron transfer as the mechanism of reaction between amino acids and triplet-excited benzophenones revealed by time-resolved CIDNP

机译:电子转移与质子偶联电子转移作为氨基酸和三重态激发的二苯甲酮的反应机制,随着时间分辨的CIDNP揭示

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摘要

Hyperfine coupling constants (HFCCs) of the short-lived radicals of 4-carboxy, 4,4'-dicarboxy, and 3,3',4,4'-tetracarboxy benzophenones (4-CBP, DCBP, and TCBP, respectively) formed in their photoreaction with tyrosine were obtained from analysis of geminate CIDNP spectra. These HFCCs were compared to HFCCs calculated using density functional theory. From this comparison, it was established that the CIDNP pattern of TCBP originates from contributions of three types of TCBP radical structures: the non-protonated anion radical and two anion radical structures with a protonated carboxylic group at position 3 or 4 (or 3' or 4'). This allowed us to conclude that the mechanism of the quenching reaction is proton coupled electron transfer (PCET): electron transfer is followed by proton transfer to one of four possible positions with similar probabilities. The same CIDNP pattern and therefore the same reaction mechanism was established for histidine. For 4-CBP and DCBP, triplet quenching proceeds also via PCET, again with formation of the anion radical with a protonated carboxylic group.
机译:超精细耦合常数4-羧基的短命自由基(HFCCs),4,4'-二羧基,和3,3' ,4,4'- tetracarboxy形成的二苯甲酮(4-CBP,DCBP,和TCBP,分别地)在其与酪氨酸光反应从成双CIDNP光谱的分析而获得。这些HFCCs进行比较,以使用密度泛函理论计算HFCCs。从这个比较中,它建立由三种类型的TCBP自由基结构中的贡献TCBP起源的CIDNP图案:在位置3或4(或3' 非质子化阴离子自由基和两个阴离子基团的结构与质子化羧基或4' )。这使我们得出结论,在猝灭反应的机理质子偶联的电子传递(PCET):电子转移之后是质子转移到具有类似概率四个可能的位置中的一个。建立了组氨酸同样CIDNP图案,并因此在相同的反应机理。对于4-CBP和DCBP,三重峰淬火经由PCET也进行,再次用在形成阴离子自由基与质子化羧基的。

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