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Understanding the unexpected effect of frequency on the kinetics of a covalent reaction under ball-milling conditions

机译:了解球磨条件下频率对共价反应动力学的意外影响

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摘要

We here explore how ball-mill-grinding frequency affects the kinetics of a disulfide exchange reaction. Our kinetic data show that the reaction progress is similar at all the frequencies studied (15–30 Hz), including a significant induction time before the nucleation and growth process starts. This indicates that to start the reaction an initial energy accumulation is necessary. Other than mixing, the energy supplied by the mechanical treatment has two effects: (i) reducing the crystal size and (ii) creating defects in the structure. The crystal-breaking process is likely to be dominant at first becoming less important later in the process when the energy supplied is stored at the molecular level as local crystal defects. This accumulation is taken here to be the rate-determining step. We suggest that the local defects accumulate preferentially at or near the crystal surface. Since the total area increases exponentially when the crystal size is reduced by the crystal-breaking process, this can further explain the exponential dependence of the onset time on the milling frequency.
机译:我们在这里探索球磨机的研磨频率如何影响二硫键交换反应的动力学。我们的动力学数据表明,在所有研究的频率(15–30 Hz)下,反应进程都是相似的,包括在成核和生长过程开始之前的大量诱导时间。这表明开始反应需要初始能量积累。除了混合之外,通过机械处理提供的能量具有两个作用:(i)减小晶体尺寸和(ii)在结构中产生缺陷。当所提供的能量以分子水平作为局部晶体缺陷存储时,晶体破碎过程起初很可能占主导地位,而在该过程中后来变得不那么重要。该累积在这里被视为速率确定步骤。我们建议局部缺陷优先聚集在晶体表面或附近。由于当通过晶体破碎过程减小晶体尺寸时,总面积呈指数增加,因此这可以进一步解释开始时间与研磨频率的指数相关性。

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