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不同沸石拓扑结构中单核和双核铜位点之间的竞争

Competition between Mononuclear and Binuclear Copper Sites across Different Zeolite Topologies.

作者信息

Wijerathne Asanka, Sawyer Allison, Daya Rohil, Paolucci Christopher

机构信息

Department of Chemical Engineering, University of Virginia, Charlottesville, Virginia 22903, United States.

Cummins Inc, Columbus, Indiana 47201, United States.

出版信息

JACS Au. 2024 Jan 4;4(1):197-215. doi: 10.1021/jacsau.3c00632. eCollection 2024 Jan 22.

Abstract

A key challenge for metal-exchanged zeolites is the determination of metal cation speciation and nuclearity under synthesis and reaction conditions. Copper-exchanged zeolites, which are widely used in automotive emissions control and potential catalysts for partial methane oxidation, have in particular evidenced a wide variety of Cu structures that are observed to change with exposure conditions, zeolite composition, and topology. Here, we develop predictive models for Cu cation speciation and nuclearity in CHA, MOR, BEA, AFX, and FER zeolite topologies using interatomic potentials, quantum chemical calculations, and Monte Carlo simulations to interrogate this vast configurational and compositional space. Model predictions are used to rationalize experimentally observed differences between Cu-zeolites in a wide-body of literature, including nuclearity populations, structural variations, and methanol per Cu yields. Our results show that both topological features and commonly observed Al-siting biases in MOR zeolites increase the population of binuclear Cu sites, explaining the small population of mononuclear Cu sites observed in these materials relative to other zeolites such as CHA and BEA. Finally, we used a machine learning classification model to determine the preference to form mononuclear or binuclear Cu sites at different Al configurations in 200 zeolites in the international zeolite database. Model results reveal several zeolite topologies at extreme ends of the mononuclear vs binuclear spectrum, highlighting synthetic options for realization of zeolites with strong Cu nuclearity preferences.

摘要

金属交换沸石面临的一个关键挑战是在合成和反应条件下确定金属阳离子的形态和核数。广泛用于汽车尾气控制和部分甲烷氧化潜在催化剂的铜交换沸石,尤其呈现出多种铜结构,这些结构会随暴露条件、沸石组成和拓扑结构而变化。在此,我们利用原子间势、量子化学计算和蒙特卡罗模拟,针对CHA、MOR、BEA、AFX和FER沸石拓扑结构中的铜阳离子形态和核数开发预测模型,以探究这一广阔的构型和组成空间。模型预测用于解释大量文献中实验观察到的铜沸石之间的差异,包括核数分布、结构变化以及每铜的甲醇产率。我们的结果表明,MOR沸石中的拓扑特征和常见的铝位点偏差都会增加双核铜位点的数量,这解释了相对于CHA和BEA等其他沸石,在这些材料中观察到的单核铜位点数量较少的原因。最后,我们使用机器学习分类模型来确定国际沸石数据库中200种沸石在不同铝构型下形成单核或双核铜位点的偏好。模型结果揭示了在单核与双核光谱极端两端的几种沸石拓扑结构,突出了实现具有强铜核数偏好的沸石的合成选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/044c/10806779/d3c3d9c66395/au3c00632_0001.jpg

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