Siwick Bradley J, Bakker Huib J
Departments of Physics and Chemistry, McGill University, 3600 University Street, Montreal, Quebec, Canada.
J Am Chem Soc. 2007 Nov 7;129(44):13412-20. doi: 10.1021/ja069265p. Epub 2007 Oct 13.
We study the mechanism of proton transfer (PT) between the photoacid (8-hydroxy-1,3,6-pyrenetrisulfonic acid (HPTS)) and the base acetate in aqueous solution using femtosecond vibrational spectroscopy. By probing the vibrational resonances of the photoacid, the accepting base, and the hydrated proton we find that intermolecular PT in this model system involves the transfer of the proton across several water molecules linking the donor-acceptor pair by hydrogen bonds (H-bonds). We find that at high base concentration the rate of PT is not determined by the mutual diffusion of acid and base but rather by the rate of Grotthuss-like conduction of the proton between molecules. This long-range PT requires an activated solvent configuration to facilitate the charge transfer.
我们使用飞秒振动光谱研究了光酸(8-羟基-1,3,6-芘三磺酸(HPTS))与碱乙酸盐在水溶液中的质子转移(PT)机制。通过探测光酸、接受碱和水合质子的振动共振,我们发现该模型体系中的分子间PT涉及质子通过几个通过氢键(H键)连接供体-受体对的水分子进行转移。我们发现,在高碱浓度下,PT的速率不是由酸和碱的相互扩散决定的,而是由质子在分子间类似Grotthuss传导的速率决定的。这种远程PT需要一种活化的溶剂构型来促进电荷转移。