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用于非UiO金属有机框架中缺失簇缺陷的连接体耗尽

Linker depletion for missing cluster defects in non-UiO metal-organic frameworks.

作者信息

Lázaro Isabel Abánades, Almora-Barrios Neyvis, Tatay Sergio, Popescu Catalin, Martí-Gastaldo Carlos

机构信息

Instituto de Ciencia Molecular (ICMol), Universidad de Valencia Catedrático José Beltrán-2 46980 Paterna Spain

CELLS-ALBA Synchrotron Light Facility 08290 Barcelona Spain.

出版信息

Chem Sci. 2021 Aug 4;12(35):11839-11844. doi: 10.1039/d1sc02408f. eCollection 2021 Sep 15.

Abstract

Defect engineering is a valuable tool to tune the properties of metal-organic frameworks. However, defect chemistry remains still predominantly limited to UiO-type MOFs. We describe the preferential formation of missing cluster defects in heterometallic titanium-organic frameworks of the MUV-10 family when synthesised in sub-stoichiometric linker conditions. Our results show the value of integrating experimental work, computational modelling and thorough characterization in rationalizing the impact of defects over the porosity and structure of this family of materials. Correlation of experiment with computational models reveals the dominance of missing cluster vacancies in the pore size distribution of defective MUV-10. These same models were used to investigate the correlation of defects by synchrotron X-ray diffraction. The diffraction at low reflection angles is dominated by diffuse scattering that is indicative of short-range order and cannot be indexed to the defective structural models generated. In addition to the low atomic scattering factor of titanium, these results confirm the need for high-resolution electron microscopy methods for modelling nanoscale disorder in titanium MOFs.

摘要

缺陷工程是调节金属有机框架材料性能的一种重要工具。然而,缺陷化学目前仍主要局限于UiO型金属有机框架。我们描述了在亚化学计量配体条件下合成时,MUV - 10家族的异金属钛有机框架中优先形成的缺失簇缺陷。我们的结果表明,整合实验工作、计算建模和全面表征对于阐明缺陷对该材料家族孔隙率和结构的影响具有重要价值。实验与计算模型的相关性揭示了缺失簇空位在缺陷MUV - 10孔径分布中的主导地位。这些模型还被用于通过同步加速器X射线衍射研究缺陷的相关性。低反射角处的衍射主要由漫散射主导,这表明存在短程有序,且无法索引到所生成的缺陷结构模型。除了钛的低原子散射因子外,这些结果证实了需要高分辨率电子显微镜方法来对钛基金属有机框架中的纳米级无序进行建模。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fa1/8442692/b1f3da4a6326/d1sc02408f-f1.jpg

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