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水溶液中脂肪族α-氨基酸光氧化的时间分辨傅里叶变换电子顺磁共振和光谱研究;氨基与羧基官能团的电子转移

Time-resolved FT EPR and optical spectroscopy study on photooxidation of aliphatic alpha-amino acids in aqueous solutions; electron transfer from amino vs carboxylate functional group.

作者信息

Tarabek Peter, Bonifacić Marija, Beckert Dieter

机构信息

Interdisciplinary Research Group Time-Resolved Spectroscopy, Faculty of Chemistry and Mineralogy, University of Leipzig, Germany.

出版信息

J Phys Chem A. 2006 Jun 8;110(22):7293-302. doi: 10.1021/jp060764m.

Abstract

Using time-resolved Fourier transform electron paramagnetic resonance, FT EPR, and optical spectroscopy, the photooxidation of glycine, alpha-alanine, alpha-aminoisobutyric acid, and model compounds beta-alanine, methylamine and sodium acetate, by excited triplets of anthraquinone-2,6-disulfonate dianion was studied in aqueous solutions in the pH range 5-13. Anthraquinone radical trianions showing strong emissive spin-polarization (CIDEP) were formed, indicating fast electron transfer from the quenchers to the spin-polarized quinone triplet as the primary reaction. None of the primary radicals formed upon one-electron oxidation of quenchers could be detected at the nanosecond time scale of FT EPR measurements because of their very fast transformation into secondary products. The latter were identified to be decarboxylated alpha-aminoalkyl radicals for alpha-amino acids anions and zwitterions, beta-aminoalkyl radicals for beta-alanine zwitterions, and methyl radicals for acetate anions; corresponding aminyl radicals were the first EPR detectable products from beta-alanine anions and methylamine. Thus, anthraquinone-2,6-disulfonate triplet can take an electron from both NH(2)- and -CO(2)(-) functional groups forming aminium ((+)NH(2)-) and acyloxyl (-CO(2)()) radicals, respectively. Aminium radicals derived from beta-alanine anions and CH(3)-NH(2) stabilize by deprotonation into aminyl radicals, whereas these derived from alpha-amino acids anions are known to suffer ultrafast decarboxylation (tau approximately 10 ps). Analysis of the polarization patterns revealed that decarboxylation from acyloxyl radicals are considerably slower (ns < tau < 0.1 micros). Therefore, in the case of alpha-amino acids, the isoelectronic structures NH(2)-CR(2)-CO(2)() and (+)NH(2)-CR(2)-CO(2)(-) probably do not constitute resonance mesomeric forms of one and the same species and the decarboxylation of aminium radicals is not preceded by the intramolecular carboxylate to amino group electron transfer. Absolute triplet quenching rate constants at zero ionic strength were in the range of 2 x 10(8) to 2 x 10(9) M(-1) s(-1) for R-NH(2) and 2 x 10(7) to 10(8) M(-1) s(-1) for R-CO(2)(-) type of electron donors, reflecting in principle their standard reduction potentials. The strengths of acids: (+)NH(3)-()CH(2), (+)NH(3)-()C(CH(3))H, and (+)NH(3)-(*)C(CH(3))(2), pK(a) <4, >6, and >7, respectively, were found to be remarkably strongly dependent on alpha-C substitution. The conjugate bases of these alpha-aminoalkyl radicals reduce anthraquinone-2,6-disulfonate dianion ground state with k(sec) = 3 x 10(9) M(-1) s(-1).

摘要

利用时间分辨傅里叶变换电子顺磁共振(FT - EPR)和光谱学方法,在pH值为5 - 13的水溶液中研究了蒽醌 - 2,6 - 二磺酸盐二价阴离子的激发三重态对甘氨酸、α - 丙氨酸、α - 氨基异丁酸以及模型化合物β - 丙氨酸、甲胺和乙酸钠的光氧化作用。形成了显示出强发射自旋极化(CIDEP)的蒽醌三价自由基阴离子,这表明从猝灭剂到自旋极化醌三重态的快速电子转移是主要反应。由于单电子氧化猝灭剂形成的初级自由基在FT - EPR测量的纳秒时间尺度上无法检测到,因为它们会非常快速地转化为次级产物。已确定后者对于α - 氨基酸阴离子和两性离子是脱羧的α - 氨基烷基自由基,对于β - 丙氨酸两性离子是β - 氨基烷基自由基,对于乙酸根阴离子是甲基自由基;相应的氨基自由基是β - 丙氨酸阴离子和甲胺的首批可通过EPR检测到的产物。因此,蒽醌 - 2,6 - 二磺酸盐三重态可以从NH₂ - 和 - CO₂⁻官能团分别夺取一个电子,形成铵基((⁺)NH₂ - )和酰氧基( - CO₂(⁎))自由基。源自β - 丙氨酸阴离子和CH₃ - NH₂的铵基自由基通过去质子化稳定为氨基自由基,而源自α - 氨基酸阴离子的铵基自由基已知会经历超快脱羧反应(τ约为10 ps)。对极化模式的分析表明,酰氧基自由基的脱羧反应要慢得多(纳秒<τ<0.1微秒)。因此,对于α - 氨基酸,等电子结构NH₂ - CR₂ - CO₂(⁎)和(⁺)NH₂ - CR₂ - CO₂⁻可能并不构成同一物种的共振离域形式,并且铵基自由基的脱羧反应之前没有分子内羧酸盐到氨基的电子转移。在零离子强度下,R - NH₂类型电子供体的绝对三重态猝灭速率常数在2×10⁸至2×10⁹ M⁻¹ s⁻¹范围内,R - CO₂⁻类型电子供体的在2×10⁷至10⁸ M⁻¹ s⁻¹范围内,这原则上反映了它们的标准还原电位。发现酸(⁺)NH₃ - (⁎)CH₂、(⁺)NH₃ - (⁎)C(CH₃)H和(⁺)NH₃ - (⁎)C(CH₃)₂的强度,其pKa分别<4、>6和>7,明显强烈依赖于α - C取代。这些α - 氨基烷基自由基的共轭碱以k(sec)=3×10⁹ M⁻¹ s⁻¹的速率还原蒽醌 - 2,6 - 二磺酸盐二价阴离子基态。

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