Carta Maria, Lukin Stipe, Delogu Francesco, Halasz Ivan
Department of Mechanical, Chemical and Materials Engineering, CSGI research unit, University of Cagliari, via Marengo 2, Cagliari, Italy.
Division of Physical Chemistry, Ruđer Bošković Institute, Bijenička 54, Zagreb, Croatia.
Phys Chem Chem Phys. 2024 Jun 12;26(23):16438-16443. doi: 10.1039/d3cp06147g.
This study investigates the mechanochemical reaction of hydrogen isotope exchange between solid benzoic acid and liquid heavy water. The systematic change of milling conditions revealed that the reaction rate scales with the milling frequency and the mass of the milling balls. The ball size being always the same, faster reactions stem from the use of higher milling frequencies and heavier balls. The kinetic curves are described by a kinetic model that accounts for the statistical, deformational and chemical factors involved in mechanochemical transformations. The results indicate that the reaction is driven by the generation of a new interface area caused by the deformation of the solid reactants.
本研究考察了固体苯甲酸与液态重水之间氢同位素交换的机械化学反应。研磨条件的系统变化表明,反应速率与研磨频率和研磨球质量成正比。在研磨球尺寸始终相同的情况下,反应速度更快源于使用了更高的研磨频率和更重的研磨球。动力学曲线由一个动力学模型描述,该模型考虑了机械化学转化过程中涉及的统计、变形和化学因素。结果表明,该反应是由固体反应物变形产生的新界面区域驱动的。