Crystal Engineering of Nanomorphology for Complex Oxide Materials via Thermal Decomposition of Metal−Organic Frameworks. Case Study of Sodium Tantalate
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https://figshare.com/articles/dataset/Crystal_Engineering_of_Nanomorphology_for_Complex_Oxide_Materials_via_Thermal_Decomposition_of_Metal_Organic_Frameworks_Case_Study_of_Sodium_Tantalate/2668003
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Application of different solvating ligands drastically changes the composition and geometry of bimetallic sodium−tantalum pinacolates, forming insoluble and stable organic−inorganic hybrid materials through Van der Waals interactions. The loss of these neutral ligands on heating leads to contraction and densification of the structures, with formation of covalent metal−organic frameworks (MOFs) as intermediates, and resulting in direction-specific cracking and formation, on further thermal decomposition, of low-dimensional nanomorphologieswires or plates of the same oxide material, containing well-crystalline monoclinic NaTaO3 as its major component. The crystallographic features of the precursor structures permitting us to control further morphological differentiation on the transformation to oxide material are identified.
创建时间:
2016-02-23



