电化学反应模拟的第一性原理计算:方法和应用介绍

Mingtao Li, Dongyu Liu, Lubing Li
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引用次数: 0

摘要

基于密度泛函理论(DFT)的第一性原理计算在旨在理解电化学反应和设计相应电极材料的最新研究中起着至关重要的作用。这些计算可以应用于确定材料的几何和电子结构,评估反应物吸附和后续反应的障碍,以及从微观角度探索反应机制,并且它们最近在许多电化学相关领域(如电催化和电池)中成为一种流行的方法。在本章中,我们概述了第一性原理计算方法,重点介绍了其在理解电化学过程中的应用。首先,介绍了与DFT相关的一些物理和数学概念。接下来,我们将讨论如何使用DFT计算来研究微尺度电化学过程。还介绍了用计算模型模拟真实系统的一些实用方法和过程。最后,我们提供了一些例子来证明第一性原理计算在电化学研究中的作用。我们的目的是让初学者对这种方法有一个概述,并为其在电化学反应中的应用提供一个实用指南。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
First-Principles Calculations for Electrochemical Reaction Modeling: An Introduction to Methods and Applications
First-principles calculations based on density functional theory (DFT) play an essential role in state-of-the-art studies aimed at understanding electrochemical reactions and designing corresponding electrode materials. These calculations can be applied to determine the geometric and electronic structures of materials, evaluate the barriers for reactant adsorption and subsequent reactions, and explore reaction mechanisms from a microscale perspective, and they have recently emerged as a popular approach in many electrochemistry-related fields, such as electrocatalysis and batteries. In this chapter, we present an overview of the first-principles calculation approach with an emphasis on providing a pedagogical introduction of its applications in understanding electrochemical processes. First, some physical and mathematical concepts relating to DFT are presented. Next, we turn to a discussion of how to investigate microscale electrochemical processes using DFT calculations. Some practical methods and processes for simulating real systems with computational models are also described. Finally, we provide some examples to demonstrate the power of first-principles calculations in electrochemical studies. Our aim is to give beginners an overview of this approach and a practical guide for its application to electrochemical reactions.
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