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首页> 外文期刊>The Journal of Chemical Physics >Studies on mechanism of reaction and density behavior during anhydrous D-fructose mutarotation in the supercooled liquid state
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Studies on mechanism of reaction and density behavior during anhydrous D-fructose mutarotation in the supercooled liquid state

机译:过冷液态无水D-果糖诱变过程中反应机理和密度行为的研究

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摘要

Recently, we have studied the mutarotation kinetics in D-fructose by means of dielectric spectroscopy. In the present work we investigate density behavior of D-fructose during mutarotation process. By performing volume measurements at temperature T = 303 K and pressure p = 10 MPa we are able to monitor kinetics of this process. As a result we found nearly the same value of the rate constant as previously determined from dielectric measurements. However, these two experimental methods monitor different molecular aspects of mutarotation phenomenon in D-fructose. Dielectric spectroscopy is sensitive to the decay of former ring as well as to the forming of another, while specific volume measurements are sensitive to the forming of new tautomers only. Calculations of activation energy of mutarotation in D-fructose led us to the conclusion, that mechanism of this reaction in amorphous phase could be based on internal proton transfer. Moreover it was found that the main mutarotation path in quenched D-fructose melt is transformation of,-furanose to -pyranose.
机译:最近,我们已经通过介电谱研究了D-果糖中的诱变动力学。在目前的工作中,我们研究了D-果糖在旋转过程中的密度行为。通过在温度T = 303 K和压力p = 10 MPa下进行体积测量,我们能够监控该过程的动力学。结果,我们发现速率常数的值几乎与先前根据介电测量确定的速率常数相同。但是,这两种实验方法监视D-果糖中的旋转现象的不同分子方面。介电谱对前一个环的衰变以及另一个环的形成均敏感,而比容测量仅对新互变异构体的形成敏感。 D-果糖中的旋转诱变活化能的计算使我们得出结论,该反应在非晶相中的机理可以基于内部质子转移。此外,发现在淬灭的D-果糖熔体中的主要诱变途径是从呋喃糖向吡喃糖的转化。

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