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评估非谐振动在β沸石材料中的作用。

Evaluating the Role of Anharmonic Vibrations in Zeolite β Materials.

作者信息

Beynon Owain T, Owens Alun, Carbogno Christian, Logsdail Andrew J

机构信息

Cardiff Catalysis Institute, Cardiff University, Park Place, Cardiff CF10 3AT, Wales, U.K.

The NOMAD Laboratory at the FHI of the Max-Planck-Gesellschaft and IRIS-Adlershof of the Humboldt-Universität zu Berlin, Faradayweg 4-6, 14195 Berlin, Germany.

出版信息

J Phys Chem C Nanomater Interfaces. 2023 Aug 7;127(32):16030-16040. doi: 10.1021/acs.jpcc.3c02863. eCollection 2023 Aug 17.

Abstract

The characterization of zeolitic materials is often facilitated by spectroscopic analysis of vibrations, which informs about the bonding character of the substrate and any adsorbents. Computational simulations aid the interpretation of the spectra but often ignore anharmonic effects that can affect the spectral characteristics significantly. Here, the impact of anharmonicity is demonstrated with a combination of dynamical and static simulations applied to the structures formed during the synthesis of Sn-BEA solid-state incorporation (SSI): the initial siliceous BEA (Si-β), aluminosilicate BEA (H-β), dealuminated BEA (deAl-β), and Sn-BEA (Sn-β). Heteroatom and defect-containing BEA are shown to have strong anharmonic vibrational contributions, with atomic and elemental resolution highlighting particularly the prevalence for H atoms (H-β, deAl-β) as well as localization to heteroatoms at defect sites. We simulate the vibrational spectra of BEA accounting for anharmonic contributions and observe an improved agreement with experimental data compared to harmonic methods, particularly at wavenumbers below 1500 cm. The results demonstrate the importance of incorporating anharmonic effects in simulations of vibrational spectra, with consequences toward future characterization and application of zeolitic materials.

摘要

沸石材料的表征通常借助振动光谱分析来实现,该分析能提供有关底物和任何吸附剂的键合特性信息。计算模拟有助于光谱的解释,但往往忽略了可能显著影响光谱特征的非谐效应。在此,通过对用于合成Sn-BEA固态掺入(SSI)过程中形成的结构进行动态和静态模拟相结合的方式,展示了非谐性的影响:初始硅质BEA(Si-β)、铝硅酸盐BEA(H-β)、脱铝BEA(deAl-β)和Sn-BEA(Sn-β)。含杂原子和缺陷的BEA显示出强烈的非谐振动贡献,原子和元素分辨率尤其突出了H原子(H-β、deAl-β)的普遍性以及缺陷位点处杂原子的局域化。我们在考虑非谐贡献的情况下模拟了BEA的振动光谱,与谐波方法相比,观察到与实验数据的一致性有所改善,特别是在波数低于1500 cm时。结果表明在振动光谱模拟中纳入非谐效应的重要性,这对沸石材料未来表征和应用具有影响。

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