首页> 外文期刊>Carbohydrate research >THE FORMATION OF 2-FURALDEHYDE AND FORMIC ACID FROM PENTOSES IN SLIGHTLY ACIDIC DEUTERIUM OXIDE STUDIED BY H-1 NMR SPECTROSCOPY
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THE FORMATION OF 2-FURALDEHYDE AND FORMIC ACID FROM PENTOSES IN SLIGHTLY ACIDIC DEUTERIUM OXIDE STUDIED BY H-1 NMR SPECTROSCOPY

机译:用H-1 NMR谱研究轻度氧化氘中戊烯生成2-醛和甲酸。

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The title reaction at 96 degrees C and pD 1.5, 3.0, or 4.5 was followed by H-1 NMR spectroscopy. The rate of pentose degradation increased in the order: arabinose approximate to xylose < ribose < 2-pentuloses. At pD 1.5, the rate of 2-furaldehyde formation increased in the same cader. Increasing pD strongly accelerated the degradation of the aldoses but slightly retarded that of the ketoses. Increasing pD also retarded the formation of 2-furaldehyde, particularly from the ketoses, and increased its deuterium content at H-alpha (from 8-25 to 50-83 atom %) and H-3 (from 79-100 to 100 atom %). This is explained by assuming that 2-furaldehyde had formed mainly via acyclic intermediates, with reversible formation of a 3-deoxypentosulose. The formation of:Formic acid was slow and did not proceed via 2-furaldehyde. As evident from experiments with 1- or 5-C-13-substituted aldopentoses, the formic acid was derived exclusively from the terminal pentose carbons, C-1 being somewhat more important than C-5. [References: 19]
机译:在96℃和pD为1.5、3.0或4.5下进行标题反应,然后进行H-1 NMR光谱分析。戊糖降解速率按以下顺序增加:阿拉伯糖近似于木糖<核糖<2-戊糖。在pD 1.5时,在相同的酒中2-糠醛的形成速率增加。 pD的增加强烈加速了醛糖的降解,但略微延迟了酮糖的降解。 pD的增加也阻碍了2-呋喃醛的形成,特别是从酮糖中形成,并增加了H-alpha(从8-25到50-83原子%)和H-3(从79-100到100原子%)中的氘含量)。通过假设2-呋喃醛主要通过无环中间体形成,而可逆形成3-脱氧戊糖来解释。甲酸的形成很慢,没有通过2-呋喃醛进行。从用1-或5-C-13取代的醛糖酶进行的实验中可以明显看出,甲酸仅衍生自末端戊糖碳,C-1比C-5更为重要。 [参考:19]

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