首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Effect of Salt on the Excited-State Dynamics of Malachite Green in Bulk Aqueous Solutions and at Air/Water Interfaces: a Femtosecond Transient Absorption and Surface Second Harmonic Generation Study
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Effect of Salt on the Excited-State Dynamics of Malachite Green in Bulk Aqueous Solutions and at Air/Water Interfaces: a Femtosecond Transient Absorption and Surface Second Harmonic Generation Study

机译:盐对多孔水溶液和空气/水界面中孔雀石绿激发态动力学的影响:飞秒瞬态吸收和表面第二谐波产生研究

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摘要

The ultrafast excited-state dynamics of Malachite Green (MG) in bulk aqueous solutions and at air/water interfaces, in particular the effect of the presence of various sodium salts in the aqueous phase, has been investigated by transient absorption and surface second harmonic generation. In bulk solutions, a slowing down of the ground-state recovery that can be unambiguously ascribed to the formation of aggregates of various sizes is observed at high (>0.3 M) salt concentrations only, with the exception of NaSCN where an effect is already found at 0.05 M. At the interface, small amounts of salt result in two effects: 1) an increase of the stationary surface second harmonic signal and 2) a slowing down of the ground-state recovery of MG. These phenomena are explained by the formation of aggregates due to an increase of the interfacial MG concentration upon addition of salt. The dependencies of both effects on salt concentration are correlated and vary with the anion as SCN~- > Br~- > SO_4~- > Cl~-. This order is almost the opposite as that in the Hofmeister series for the salting-out strength.
机译:通过瞬态吸收和表面二次谐波的研究,研究了孔雀石绿(MG)在大量水溶液中以及在空气/水界面处的超快激发态动力学,特别是在水相中存在各种钠盐的影响。 。在散装溶液中,只有在高盐浓度(> 0.3 M)时,才能观察到基态恢复的放缓,这显然可以归因于各种尺寸的聚集体的形成,但已经发现影响的NaSCN除外在0.05 M时。在界面处,少量盐会产生两个效果:1)固定表面二次谐波信号的增加,以及2)MG的基态恢复减慢。这些现象通过添加盐时界面MG浓度增加而形成聚集体来解释。两种作用对盐浓度的依赖性是相关的,并且随着阴离子的变化而变化,如SCN〜-> Br〜-> SO_4〜-> Cl〜-。此顺序几乎与霍夫迈斯特系列中的耐盐渍强度相反。

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