Hellström Matti, Behler Jörg
Lehrstuhl für Theoretische Chemie, Ruhr-Universität Bochum , 44780 Bochum, Germany.
Universität Göttingen , Institut für Physikalische Chemie, Tammannstr. 6, 37077 Göttingen, Germany.
J Phys Chem B. 2017 Apr 27;121(16):4184-4190. doi: 10.1021/acs.jpcb.7b01490. Epub 2017 Apr 14.
Ligand exchange plays an important role for organic and inorganic chemical reactions. We demonstrate the existence of a novel water exchange mechanism, the "proton transfer pathway" (PTP), around Na(aq) in basic (high pH) solution, using reactive molecular dynamics simulations employing a high-dimensional neural network potential. An aqua ligand in the first solvation (hydration) shell around a sodium ion is only very weakly acidic, but if a hydroxide ion is present in the second solvation shell, thermal fluctuations can cause the aqua ligand to transfer a proton to the neighboring OH, resulting in a transient direct-contact ion pair, Na-OH, which is only weakly bound and easily dissociates. The extent to which water exchange events follow the PTP is pH-dependent: in dilute NaOH(aq) solutions, only very few exchanges occur, whereas in saturated NaOH(aq) solutions up to a third of water self-exchange events are induced by proton transfer. The principles and results outlined here are expected to be relevant for chemical synthesis involving bases and alkali metal cations.
配体交换在有机和无机化学反应中起着重要作用。我们使用基于高维神经网络势的反应分子动力学模拟,证明了在碱性(高pH)溶液中,围绕Na(aq)存在一种新型的水交换机制,即“质子转移途径”(PTP)。钠离子周围第一溶剂化(水合)壳层中的水合配体酸性非常弱,但如果第二溶剂化壳层中存在氢氧根离子,热涨落会导致水合配体将一个质子转移到相邻的OH上,形成一个瞬态直接接触离子对Na-OH,该离子对结合较弱且容易解离。水交换事件遵循PTP的程度取决于pH:在稀NaOH(aq)溶液中,只有极少数交换发生,而在饱和NaOH(aq)溶液中,高达三分之一的水自交换事件是由质子转移诱导的。这里概述的原理和结果预计与涉及碱和碱金属阳离子的化学合成相关。