Theoretical Prediction and Experimental Evaluation of Topological Landscape and Thermodynamic Stability of a Fluorinated Zeolitic Imidazolate Framework
收藏Figshare2019-04-24 更新2026-04-29 收录
下载链接:
https://figshare.com/articles/dataset/Theoretical_Prediction_and_Experimental_Evaluation_of_Topological_Landscape_and_Thermodynamic_Stability_of_a_Fluorinated_Zeolitic_Imidazolate_Framework/8085251
下载链接
链接失效反馈官方服务:
资源简介:
The prediction of topological preferences and polymorph stability remains a challenge for the design of metal–organic frameworks exhibiting a rich topological landscape, such as zeolitic imidazolate frameworks (ZIFs). Here, we have used mechanochemical screening and calorimetry to test the ability of dispersion-corrected periodic density functional theory (DFT) to accurately survey the topological landscape, as well as quantitatively evaluate polymorph stability, for a previously not synthesized ZIF composition. Theoretical calculations were used to obtain an energy ranking and evaluate energy differences for a set of hypothetical, topologically distinct structures of a fluorine-substituted ZIF. Calculations were then experimentally validated via mechanochemical screening and calorimetry, which confirmed two out of three theoretically anticipated topologies, including a fluorinated analogue of the popular ZIF-8, while revealing an excellent match between the measured and theoretically calculated energetic differences between them. The results, which speak strongly in favor of the ability of dispersion-corrected periodic DFT to predict the topological landscape of new ZIFs, also reveal the ability to use peripheral substituents on the organic linker to modify the framework thermodynamic stability.
创建时间:
2019-04-24



