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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Understanding of matrix embedding: a theoretical spectroscopic study of CO interacting with Ar clusters, surfaces and matrices
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Understanding of matrix embedding: a theoretical spectroscopic study of CO interacting with Ar clusters, surfaces and matrices

机译:了解基质嵌入:CO与Ar团簇,表面和基质相互作用的理论光谱研究

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Through benchmark studies, we explore the performance of PBE density functional theory, with and without Grimme's dispersion correction (DFT-D3), in predicting spectroscopic properties for molecules interacting with rare gas matrices. Here, a periodic-dispersion corrected model of matrix embedding is used for the first time. We use PBE-D3 to determine the equilibrium structures and harmonic vibrational frequencies of carbon monoxide in interaction with small Ar clusters (CO-Ar-n, n = 1, 2, 3), with an Ar surface and embedded in an Ar matrix. Our results show a converging trend for both the vibrational frequencies and binding energies when going from the gas-phase to a fully periodic approach describing CO embedding in Ar. This trend is explained in terms of solvation effects, as CO is expected to alter the structure of the Ar matrix. Due to a competition between CO-Ar interactions and Ar-Ar interactions, perturbations caused by the presence of CO are found to extend over several angstrom in the matrix. Accordingly, it is mandatory to fully relax rare gas matrices when studying their interaction with embedded molecules. Moreover, we show that the binding energy per Ar is almost constant (similar to -130 cm(-1) atom(-1)) regardless of the environment of the CO molecule. Finally, we show that the concentration of the solute into the cold matrix influences the spectroscopic parameters of molecules embedded into cold matrices. We suggest hence that several cautions should be taken before comparing these parameters to gas phase measurements and to theoretical data of isolated species.
机译:通过基准研究,我们探索了有无Grimme色散校正(DFT-D3)的PBE密度泛函理论在预测与稀有气体基质相互作用的分子的光谱性质方面的性能。在此,第一次使用矩阵嵌入的周期性色散校正模型。我们使用PBE-D3来确定与小的Ar簇(CO-Ar-n,n = 1、2、3)相互作用的一氧化碳的平衡结构和谐波振动频率,该簇具有Ar表面并嵌入Ar矩阵中。我们的结果表明,当从气相转向描述Ar嵌入CO的全周期性方法时,振动频率和结合能都趋于收敛。这种趋势用溶剂化效应来解释,因为预计CO会改变Ar基体的结构。由于CO-Ar相互作用和Ar-Ar相互作用之间的竞争,发现由CO的存在引起的扰动扩展了基质中的几埃。因此,在研究稀有气体基质与嵌入分子的相互作用时,必须充分放松。此外,我们显示每个Ar的结合能几乎恒定(类似于-130 cm(-1)原子(-1)),而与CO分子的环境无关。最后,我们表明溶质在冷基质中的浓度会影响嵌入冷基质中的分子的光谱参数。因此,我们建议在将这些参数与气相测量值和离体物种的理论数据进行比较之前,应采取一些注意事项。

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