Department of Chemistry and Applied Biosciences , ETH Zurich , c/o USI Campus, Via Giuseppe Buffi 13 , CH-6900 Lugano , Switzerland.
Facoltà di Informatica, Istituto di Scienze Computazionali , Università della Svizzera Italiana , Via Giuseppe Buffi 13 , CH-6900 Lugano , Switzerland.
J Phys Chem B. 2019 Aug 8;123(31):6851-6856. doi: 10.1021/acs.jpcb.9b05271. Epub 2019 Jul 30.
Aqueous solutions provide a medium for many important reactions in chemical synthesis, industrial processes, environmental chemistry, and biological functions. It is an accepted fact that aqueous solvents can be direct participants in the reaction process and not act only as simple passive dielectrics. Assisting water molecules and proton wires are thus essential for the efficiency of many reactions. Here, we study the decomposition of urea into ammonia and isocyanic acid by means of enhanced ab initio molecular dynamics simulations. We highlight the role of the solvent molecules and their interactions with the reactants providing a proper description of the reaction mechanism and how the water hydrogen-bond network affects the reaction dynamics. Reaction free energy and rates have been calculated taking into account this important effect.
水溶液为许多化学合成、工业过程、环境化学和生物功能中的重要反应提供了介质。众所周知,水溶剂可以直接参与反应过程,而不仅仅作为简单的非极性介质。因此,协助水分子和质子导线对于许多反应的效率至关重要。在这里,我们通过增强的从头算分子动力学模拟研究了尿素分解为氨和异氰酸的过程。我们强调了溶剂分子的作用及其与反应物的相互作用,为反应机制提供了适当的描述,以及水氢键网络如何影响反应动力学。考虑到这一重要影响,我们计算了反应自由能和速率。