腺嘌呤和羟基腺嘌呤在热解石墨电极上的氧化化学

R. Goyal, Anoop Kumar, A. Mittal
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引用次数: 41

摘要

在pH为3.0 ~ 11.2的水溶液中,用热解石墨电极研究了腺嘌呤和羟基腺嘌呤的电化学氧化。电极反应的初始过程是2e, 2H+反应,得到2-羟基腺嘌呤,而不是8-羟基腺嘌呤,进一步氧化得到2,8-二羟基腺嘌呤,然后再经过一系列化学反应得到不同的产物二亚胺。用高效液相色谱法和柱层析法分离了pH为3.0时的主要氧化产物[尿素、四氧嘧啶[2,4,5,6(1H,3H)-嘧啶四酮]和对羟基苯甲酸(咪唑烷三酮)]和pH为7.0时的主要氧化产物[尿囊素(5-尿囊素)],并用光谱技术对其结构进行了鉴定。还提出了它们形成的可能的欧共体机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Oxidation chemistry of adenine and hydroxyadenines at pyrolytic graphite electrodes
The electrochemical oxidation of adenine and hydroxyadenines has been studied in aqueous solutions in the pH range 3.0–11.2 using a pyrolytic graphite electrode. The initial course of the electrode reaction has been deduced to involve a 2e, 2H+ reaction to give 2- and not 8-hydroxyadenine, further oxidation of which gives 2,8-dihydroxyadenine and then diimine species which undergo a series of chemical reactions to give different products. The major products of oxidation at pH 3.0 {urea, alloxan [2,4,5,6(1H,3H)-pyrimidinetetrone] and parabanic acid (imidazolidinetrione)} and at pH 7.0 [allantoin (5-ureidohydantoin)] have been isolated using HPLC and column chromatography and their structures elucidated by spectroscopic techniques. The probable EC mechanisms for their formation have also been suggested.
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