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Group additivity-Pourbaix diagrams advocate thermodynamically stable nanoscale clusters in aqueous environments

机译:基团加性-Pourbaix图提倡在水环境中热力学稳定的纳米级团簇

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摘要

The characterization of water-based corrosion, geochemical, environmental and catalytic processes rely on the accurate depiction of stable phases in a water environment. The process is aided by Pourbaix diagrams, which map the equilibrium solid and solution phases under varying conditions of pH and electrochemical potential. Recently, metastable or possibly stable nanometric aqueous clusters have been proposed as intermediate species in non-classical nucleation processes. Herein, we describe a Group Additivity approach to obtain Pourbaix diagrams with full consideration of multimeric cluster speciation from computations. Comparisons with existing titration results from experiments yield excellent agreement. Applying this Group Additivity-Pourbaix approach to Group 13 elements, we arrive at a quantitative evaluation of cluster stability, as a function of pH and concentration, and present compelling support for not only metastable but also thermodynamically stable multimeric clusters in aqueous solutions.
机译:水性腐蚀,地球化学,环境和催化过程的表征取决于水环境中稳定相的准确描述。该过程借助Pourbaix图进行辅助,该图绘制了在pH和电化学势变化的条件下平衡的固相和溶液相的图。最近,已经提出亚稳态或可能稳定的纳米级水团簇作为非经典成核过程中的中间物种。在本文中,我们描述了一种组可加性方法,该方法通过充分考虑多聚类聚类的形成来获得Pourbaix图。与现有实验滴定结果的比较得出了很好的一致性。将这种群可加性-Pourbaix方法应用于第13组元素,我们得出了对簇稳定性(作为pH和浓度的函数)的定量评估,并提出了对水溶液中亚稳且热力学稳定的多聚簇的有力支持。

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