Suppr超能文献

质子化尿嘧啶-5-基自由基阳离子的气相氧化反应。

Gas-Phase Oxidation of the Protonated Uracil-5-yl Radical Cation.

作者信息

Bezzina James P, Prendergast Matthew B, Blanksby Stephen J, Trevitt Adam J

机构信息

School of Chemistry, University of Wollongong , Wollongong, Australia 2522.

Central Analytical Research Facility, Institute for Future Environments, Queensland University of Technology , Brisbane, Australia 4001.

出版信息

J Phys Chem A. 2018 Feb 1;122(4):890-896. doi: 10.1021/acs.jpca.7b09411. Epub 2018 Jan 17.

Abstract

This study targets the kinetics and product detection of the gas-phase oxidation reaction of the protonated 5-dehydrouracil (uracil-5-yl) distonic radical cation using ion-trap mass spectrometry. Protonated 5-dehydrouracil radical ions (5-dehydrouracilH radical ion, m/z 112) are produced within an ion trap by laser photolysis of protonated 5-iodouracil. Storage of the 5-dehydrouracilH radical ion in the presence of controlled concentration of O reveals two main products. The major reaction product pathway is assigned as the formation of protonated 2-hydroxypyrimidine-4,5-dione (m/z 127) + OH. A second product ion (m/z 99), putatively assigned as a five-member-ring ketone structure, is tentatively explained as arising from the decarbonylation (-CO) of protonated 2-hydroxypyrimidine-4,5-dione. Because protonation of the 5-dehydrouracil radical likely forms a dienol structure, the O reaction at the 5 position is ortho to an -OH group. Following this addition of O, the peroxyl-radical intermediate isomerizes by H atom transfer from the -OH group. The ensuing hydroperoxide then decomposes to eliminate OH radical. It is shown that this elimination of OH radical (-17 Da) is evidence for the presence of an -OH group ortho to the initial phenyl radical site, in good accord with calculations. The subsequent CO loss mechanism, to form the aforementioned five-member-ring structure, is unclear, but some pathways are discussed. By following the kinetics of the reaction, the room temperature second-order rate coefficient of the 5-dehydrouracilH distonic radical cation with molecular oxygen is measured at 7.2 × 10 cm molecule s, Φ = 12% (with ±50% total accuracy). For aryl radical reactions with O, the presence of the OH elimination product pathway, following the peroxyl-radical formation, is an indicator of an -OH group ortho to the radical site.

摘要

本研究利用离子阱质谱法,针对质子化5-脱氢尿嘧啶(尿嘧啶-5-基)双自由基阳离子的气相氧化反应的动力学和产物检测展开研究。质子化5-碘尿嘧啶经激光光解在离子阱内产生质子化5-脱氢尿嘧啶自由基离子(5-脱氢尿嘧啶H自由基离子,m/z 112)。在受控浓度的O存在下储存5-脱氢尿嘧啶H自由基离子,可得到两种主要产物。主要反应产物途径被确定为质子化2-羟基嘧啶-4,5-二酮(m/z 127)+ OH的形成。第二个产物离子(m/z 99),推测为五元环酮结构,初步解释为源自质子化2-羟基嘧啶-4,5-二酮的脱羰作用(-CO)。由于5-脱氢尿嘧啶自由基的质子化可能形成二烯醇结构,O在5位的反应与一个-OH基团处于邻位。在添加O之后,过氧自由基中间体通过从-OH基团进行氢原子转移而异构化。随后形成的氢过氧化物分解以消除OH自由基。结果表明,这种OH自由基的消除(-17 Da)证明在初始苯基自由基位点的邻位存在一个-OH基团,这与计算结果高度吻合。随后形成上述五元环结构的CO损失机制尚不清楚,但讨论了一些可能途径。通过跟踪反应动力学,测得5-脱氢尿嘧啶H双自由基阳离子与分子氧在室温下的二级速率系数为7.2×10 cm³分子⁻¹ s⁻¹,Φ = 12%(总精度±50%)。对于芳基自由基与O的反应,在过氧自由基形成之后出现OH消除产物途径,是自由基位点邻位存在-OH基团的一个指示。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验