Disclosing the Complex Structure of UiO-66 Metal Organic Framework: A Synergic Combination of Experiment and Theory

从头算 扩展X射线吸收精细结构 化学 粉末衍射 从头算量子化学方法 材料科学 计算化学 红外光谱学 电子结构 物理化学 结晶学 密度泛函理论 分子 吸收光谱法 有机化学 物理 量子力学
作者
Loredana Valenzano,Bartolomeo Civalleri,Sachin Chavan,Silvia Bordiga,Merete Hellner Nilsen,Søren Jakobsen,Karl Petter Lillerud,Carlo Lamberti
出处
期刊:Chemistry of Materials [American Chemical Society]
卷期号:23 (7): 1700-1718 被引量:1868
标识
DOI:10.1021/cm1022882
摘要

Through a combined use of experimental and theoretical approaches such as XRPD, EXAFS, IR, and UV−vis spectroscopies and ab initio periodic DFT calculations, we report a detailed characterization of structural, vibrational, and electronic properties of UiO-66 (Zr-BDC MOF) in its hydroxylated and dehydroxylated forms. The stability of the materials with respect to the most common solvents, acids, and bases is determined by combining XRPD and TGA/MS techniques. The structures of the two forms of UiO-66 are refined through an interactive XRPD/EXAFS approach and validated by ab initio calculations. Experimental and calculated IR spectra are reported and compared to enlighten the nature of vibrational modes upon dehydroxylation and to show the complete reversibility of the dehydration/hydration phenomenon. Experimental and calculated band gaps are also reported and compared. In this work, we show the necessity to combine, in a synergic way, different experimental techniques and periodic ab initio approaches to disclose and fully understand the nature of complex novel materials such as UiO-66 on structural, vibrational, and electronic grounds. The correct structure refinement could not be possible using one of these three approaches alone, in particular, XRPD data were unable to detect an important distortion of the Zr6O6 units of the dehydrated material that was, however, foreseen in the ab initio calculations and measured in the EXAFS spectra.
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