首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Proton Tunnelling in the Hydrogen Bonds of the Benzoic Acid Dimer: ~(18)O Substitution and Isotope Effects of the Heavy Atom Framework
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Proton Tunnelling in the Hydrogen Bonds of the Benzoic Acid Dimer: ~(18)O Substitution and Isotope Effects of the Heavy Atom Framework

机译:苯甲酸二聚体氢键中的质子隧穿:〜(18)O取代和重原子骨架的同位素效应

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摘要

Field-cycling ~1H NMR relaxometry has been used to measure the rate of concerted double proton transfer in the hydrogen bonds of ~(16)O and ~(18)O isotopologues of benzoic acid dimers. The experiments have been conducted in the solid state at low temperature 13.3 ≤ T ≤ 80 K where the dynamics are dominated by incoherent proton tunnelling. The low temperature tunnelling rate in the ~(16)O isotopologue is observed to be approximately 15% faster than in the ~(18)O isotopologue. The difference is attributed to an isotope effect of the heavy atom framework of the benzoic acid dimer resulting from displacements of the oxygen atoms that accompany the proton transfer. Sources of systematic uncertainty have been minimized in the design of the experimental protocols and the experiments are critically appraised in formally assigning the measured differences to an effect of mass on the tunnelling dynamics.
机译:场循环〜1H NMR弛豫法已用于测量苯甲酸二聚体〜(16)O和〜(18)O同位素分子氢键中一致的双质子转移速率。实验是在低温13.3≤T≤80 K的固态下进行的,其中动力学受非相干质子隧穿的影响。观察到〜(16)O同位素分子中的低温隧穿速率比〜(18)O同位素分子中的低温隧穿速率快约15%。该差异归因于苯甲酸二聚体的重原子构架的同位素效应,该同位素效应是由于质子转移所伴随的氧原子的位移而引起的。在设计实验方案时,已将系统不确定性的源头降至最低,并且在对测量差异正式分配给质量对隧道动力学的影响方面,对实验进行了严格的评估。

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