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首页> 外文期刊>Angewandte Chemie >Spatio-Chemical Heterogeneity of Defect-Engineered Metal-Organic Framework Crystals Revealed by Full-Field Tomographic X-ray Absorption Spectroscopy
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Spatio-Chemical Heterogeneity of Defect-Engineered Metal-Organic Framework Crystals Revealed by Full-Field Tomographic X-ray Absorption Spectroscopy

机译:全场断层X射线吸收光谱显示的缺陷工程金属 - 有机框架晶体的时代异质性

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摘要

The introduction of structural defects in metal-organic frameworks (MOFs), often achieved through the fractional use of defective linkers, is emerging as a means to refine the properties of existing MOFs. These linkers, missing coordination fragments, create unsaturated framework nodes that may alter the properties of the MOF. A property-targeted utilization of this approach demands an understanding of the structure of the defect-engineered MOF. We demonstrate that full-field X-ray absorption near-edge structure computed tomography can help to improve our understanding. This was demonstrated by visualizing the chemical heterogeneity found in defect-engineered HKUST-1 MOF crystals. A non-uniform incorporation and zonation of the defective linker was discovered, leading to the presence of clusters of a second coordination polymer within HKUST-1. The former is suggested to be responsible, in part, for altered MOF properties; thereby, advocating for a spatio-chemically resolved characterization of MOFs.
机译:在金属有机框架(MOF)中引入结构缺陷,通常是通过部分使用有缺陷的连接体来实现的,正在成为改善现有MOF性能的一种手段。这些缺少协调片段的链接器会创建可能会改变MOF属性的不饱和框架节点。这种方法的针对性使用要求了解缺陷工程MOF的结构。我们证明,全场X射线吸收近边缘结构计算机断层扫描有助于提高我们的理解。通过可视化缺陷工程HKUST-1 MOF晶体中发现的化学异质性,可以证明这一点。发现缺陷连接体的非均匀掺入和分带,导致HKUST-1内存在第二配位聚合物簇。建议前者部分负责MOF财产的变更;因此,倡导MOF的空间化学解析表征。

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