评估Pourbaix图对计算协议的敏感性:镍氧化物的电化学稳定性作为一个案例研究

IF 3.2 3区 化学 Q2 CHEMISTRY, PHYSICAL
Wenyu Sun*, Nitish Govindarajan, Aditya Prajapati, Jeremy T. Feaster, Christopher Hahn and Sneha A. Akhade, 
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引用次数: 0

摘要

Pourbaix图是评价和可视化材料电化学稳定性的有效工具,广泛用于电催化剂的设计。然而,它们的可靠性取决于所涉及相的化学势的准确性,这可能具有不确定性,并且可能受到计算协议中决策步骤的显着影响。本研究引入了一个强大的灵敏度分析框架,通过对Ni的计算Pourbaix图的详细检查来举例说明,Ni的氧化物被用作许多电化学反应的高活性和低成本催化剂。从Pourbaix图中得到的感兴趣的量包括催化活性Ni氧化物相的外观和稳定域以及相变的开始电化学电位。这些指标可以指导氧化镍电催化剂操作条件的设计。我们发现所使用的DFT交换相关函数对计算的Pourbaix图有最显著的影响。晶体结构的不确定性及其相关的从头算能量学也会影响相稳定域的大小。发现输入参数之间的高阶耦合在影响图中Ni相的外观和分布方面起着至关重要的作用。我们的研究结果表明,需要考虑与材料设计中预测的Pourbaix图的计算过程相关的变化和不确定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Assessing the Sensitivity of Pourbaix Diagrams to Computational Protocols: Electrochemical Stability of Ni Oxides as a Case Study

Assessing the Sensitivity of Pourbaix Diagrams to Computational Protocols: Electrochemical Stability of Ni Oxides as a Case Study

Pourbaix diagrams stand as a useful tool in assessing and visualizing materials’ electrochemical stability and are widely used for electrocatalyst design. However, their reliability hinges on the accuracy of the chemical potentials of involved phases, which may bear uncertainties and can be significantly impacted by decision-making steps in the computational protocol. This study introduces a robust sensitivity analysis framework, exemplified through a detailed examination of the computational Pourbaix diagram of Ni, the oxides of which are used as high-activity and cost-friendly catalysts for many electrochemical reactions. Quantities of interest derived from the Pourbaix diagram include the appearance and stability domain of the catalytically active Ni oxide phases along with the onset electrochemical potentials of phase transitions. These metrics can guide the design of operational conditions for Ni oxide electrocatalysts. We find that the employed DFT exchange-correlation functional has the most significant influence on the computed Pourbaix diagram. Uncertainties on crystal structures, along with their related ab initio energetics, are also found to affect the size of the phase stability domain. Higher-order coupling among input parameters is found to play a crucial role in influencing the appearance and distribution of Ni phases in the diagram. Our findings suggest a need to consider variations and uncertainties associated with the computational procedures on predicted Pourbaix diagrams for materials design.

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来源期刊
The Journal of Physical Chemistry C
The Journal of Physical Chemistry C 化学-材料科学:综合
CiteScore
6.50
自引率
8.10%
发文量
2047
审稿时长
1.8 months
期刊介绍: The Journal of Physical Chemistry A/B/C is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, and chemical physicists.
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