论文标题

顺磁波动对氧气进化反应中MNO热化学热化学(100)表面的影响

Effects of paramagnetic fluctuations on the thermochemistry of MnO (100) surfaces in the oxygen evolution reaction

论文作者

Yoon, Sangmoon, Jin, Kyoungsuk, Lee, Sangmin, Nam, Ki Tae, Kim, Miyoung, Kwon, Young-Kyun

论文摘要

我们使用“非胶合线性磁采样方法\ textit {plus} $ u $”(NCMSM $+U $),研究了顺磁性(PM)波动对氧演化反应(OER)中MNO表面热化学的影响。估算了PM状态下MNO(100)表面的各种物理特性,例如具有多个OER中间体的MNO(100)表面,并与反铁磁性(AFM)状态的各种物理特性进行了比较。我们发现,PM波动增强了从表面Mn离子到每个中间体的电荷转移,并加强了它们之间的化学键,同时不改变整体特征,例如在反应途径中的速率确定步骤和静止状态。增强的电荷转移可以归因于在PM表面观察到的价带的离域性质。此外,观察到化学键的增强取决于中间体,从而导致反应能屏障的显着偏差。我们的研究表明,PM波动在相关的氧化物表面上发生的化学反应的热化学中起重要作用。

We investigated the effects of paramagnetic (PM) fluctuations on the thermochemistry of the MnO(100) surface in the oxygen evolution reaction (OER) using the "noncollinear magnetic sampling method \textit{plus} $U$" (NCMSM$+U$). Various physical properties, such as the electronic structure, free energy, and charge occupation, of the MnO (100) surface in the PM state with several OER intermediates, were reckoned and compared to those in the antiferromagnetic (AFM) state. We found that PM fluctuation enhances charge transfer from a surface Mn ion to each of the intermediates and strengthens the chemical bond between them, while not altering the overall features, such as the rate determining step and resting state, in reaction pathways. The enhanced charge transfer can be attributed to the delocalized nature of valence bands observed in the PM surface. In addition, it was observed that chemical-bond enhancement depends on the intermediates, resulting in significant deviations in reaction energy barriers. Our study suggests that PM fluctuations play a significant role in the thermochemistry of chemical reactions occurring on correlated oxide surfaces.

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