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由偏振拉曼光谱证明具有 MFI 骨架结构的分子筛单晶中的局域各向异性。

Local anisotropy in single crystals of zeotypes with the MFI framework structure evidenced by polarised Raman spectroscopy.

机构信息

Department of Chemistry and Chemical Engineering, Chalmers University of Technology, SE-412 96 Gothenburg, Sweden.

出版信息

Phys Chem Chem Phys. 2020 Jan 21;22(3):1640-1654. doi: 10.1039/c9cp06199a. Epub 2020 Jan 2.

Abstract

Polarised Raman spectroscopy is used to characterise the local structure in single crystals of zeotypes, namely silicalite-1 and ZSM-5, which share the MFI framework structure. Attributes favourable for applying polarised Raman spectroscopy are the orthogonal axes of these single crystals and their size, i.e. 10 to 30 micrometers in all three directions. We show that the intensity of certain vibrational modes in silicalite-1 depends on the polarisation of the incident light, reflecting the anisotropic character of the molecular bonds contributing to these vibrations. Using these observations, and by estimating the depolarisation ratio (ρ) and the pseudo-order factor (f), we propose a more accurate assignment of the Raman active modes. More precisely, Raman intensities peaked at 294, 360, 383 and 472 cm are attributed to bending modes in 10-, 6-, 5- and 4-membered rings, respectively. In the region of stretching modes, the vibration at 832 cm is assigned to Si-O-Si bonds shared between 5-membered rings, which have an orientation parallel to the a-axis of the crystal. By virtue of having a strongly polarised character, the modes at 472 and 832 cm can be used as orientational indicators. The proposed assignment is supported by the good agreement between experimental and simulated polar plots, where Raman intensities are plotted as a function of the polarisation angle of the incident light. Finally, upon partial substitution of Si atoms by Al, the crystalline structure is maintained and almost no spectroscopic changes are observed. The only significant difference is the increased width of most vibrational modes, which is consistent with the local lower symmetry. This is also seen in the angular dependence of selected vibrational modes that compared to the case of pure silicalite-1 appear less polarised. In the Raman spectrum of ZSM-5 a new feature at 974 cm is observed, which we attribute to Al-OH stretching. In the high frequency range, the O-H stretching modes are observed which arise from the Si-O(H)-Al Brønsted acid sites. The intensity of the characteristic mode at 3611 cm reveals an anisotropic character as well, which is in line with previous findings from solid state NMR that Al atoms distribute nonrandomly within the MFI framework structure.

摘要

偏振拉曼光谱用于对沸石型分子筛(硅沸石-1 和 ZSM-5)的单晶进行局部结构特征分析,这两种分子筛具有 MFI 骨架结构。适用于偏振拉曼光谱的属性是这些单晶的正交轴及其尺寸,即三个方向均为 10 到 30 微米。我们表明,硅沸石-1 中某些振动模式的强度取决于入射光的偏振,这反映了对这些振动有贡献的分子键的各向异性特征。利用这些观察结果,并通过估计退偏比(ρ)和伪阶因子(f),我们提出了更准确的拉曼活性模式分配。更准确地说,在 294、360、383 和 472 cm 处出现的拉曼峰分别归因于 10、6、5 和 4 元环中的弯曲模式。在伸缩模式区域,832 cm 处的振动归因于与晶体 a 轴平行取向的 5 元环之间的 Si-O-Si 键。由于具有强烈的各向异性特征,472 和 832 cm 处的模式可用作取向指示符。该分配方案得到了实验和模拟极图之间良好一致性的支持,其中拉曼强度作为入射光的偏振角的函数进行绘制。最后,当 Si 原子被部分取代为 Al 原子时,晶体结构得以保持,几乎没有观察到光谱变化。唯一的显著差异是大多数振动模式的宽度增加,这与局部较低的对称性一致。与纯硅沸石-1 相比,这种情况在选定振动模式的角度依赖性中也可见,其表现出的各向异性特征较弱。在 ZSM-5 的拉曼光谱中观察到 974 cm 处的新特征,我们将其归因于 Al-OH 伸缩。在高频范围内,观察到源自 Si-O(H)-Al Brønsted 酸位的 O-H 伸缩模式。特征模式在 3611 cm 处的强度也表现出各向异性,这与之前的固态 NMR 研究结果一致,即 Al 原子在 MFI 骨架结构中呈非随机分布。

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