Department of Chemistry and Pharmacy, University of Sassari, Sassari (SS) 07100, Italy.
Department of Earth, Environmental and Physical Sciences-DEEP Sciences, University of Siena, Siena (SI) 53100, Italy.
J Phys Chem B. 2020 Oct 29;124(43):9658-9667. doi: 10.1021/acs.jpcb.0c06956. Epub 2020 Sep 29.
We studied the effect of spectator ions in the prototype of far-from-equilibrium self-organized chemical systems, the Belousov-Zhabotinsky (BZ) reaction. In particular, we investigated the specific ion effect of alkali metal cations, connoted for their kosmotropic and chaotropic properties. By means of combined experimental and numerical approaches, we could show a neat and robust evidence for the Hofmeister effect in this system. Spectator cations induce a marked increment of the induction period that preludes regular oscillations and decrease the oscillation amplitude following the sequence Li < Na ≪ K ∼ Cs. These ions affect the system kinetics by interfering in the interaction between the oxidized form of the catalyst and the organic substrate, responsible for resetting the BZ system to pre-autocatalytic (reduced) conditions. The specific ion effect on these key reactive steps is systematically characterized and correlated with different parameters which describe the interaction of the cations with the solvent.
我们研究了远离平衡自组织化学体系原型中 spectator 离子的影响,即 Belousov-Zhabotinsky(BZ)反应。特别地,我们研究了碱金属阳离子的特殊离子效应,这些离子因其亲水性和疏水性而被赋予了特殊的含义。通过结合实验和数值方法,我们在该体系中得到了 Hofmeister 效应的清晰而稳健的证据。 spectator 阳离子会引起诱导期的显著增加,从而导致规则振荡的出现,并按照 Li < Na ≪ K ∼ Cs 的顺序减小振荡幅度。这些离子通过干扰催化剂的氧化形式与有机底物之间的相互作用来影响系统动力学,而这种相互作用负责将 BZ 系统重置为预自催化(还原)状态。我们系统地研究了这些关键反应步骤中特殊离子的影响,并将其与描述阳离子与溶剂相互作用的不同参数相关联。