4.6 Article

Synthesis of newly amorphous-porous titanium-based 3D-MOFs

期刊

JOURNAL OF MOLECULAR STRUCTURE
卷 1245, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.molstruc.2021.130912

关键词

MOFs; UV/Vis; XRD; IR; BET-surface area; XPS

资金

  1. Taif University Administration -research supporting project, Taif University-Saudi Arabia [TURSP-2020/46]

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An amorphous 3D-Ti(IV)-(syn-anti)-(Me, Me)-Bimane polymeric MOFs were successfully synthesized for the first time by fast assembling syn and anti isomers of (Me, Me)bimane under microwave assisted hydrothermal procedures. The mixed ligands of (syn-anti-(Me, Me) bimane) isomers were expected to form crystalline Ti-MOFs but instead produced an amorphous Ti(IV)-MOFs, with a high specific surface area of approximately 689 m(2)/g as characterized by various techniques like XPS, TEM, and BET analysis.
An amorphous 3D-Ti(IV)-(syn-anti)-(Me, Me)-Bimane polymeric MOFs were successfully synthesized for the first time, by applying simple fast assembling of syn-and anti-isomers -(Me, Me)bimane under mi-crowave assisted hydrothermal procedures. Although the applied mixed ligands of (syn-anti-(Me, Me) bi-mane have high degree of symmetry in their structures, it was expected to give crystalline Ti-MOFs, but it produced an amorphous Ti(IV)-MOFs. The coordination chemistry of core-bimane isomers as mono-, di-and tridentate still unexplored. The molecular visualization studies, coupled with DFT calculations of the produced amorphous Ti(IV)-MOFs were manage to propose different possibilities for mixed ligands of (syn-anti-(Me, Me) bimane) isomers, which can form octahedron-units with six-coordinative bonds with respect to syn-bimane as bi-dentate ligands, and square planar geometrical shape in case of mono-dentate anti-bimane ligands that, capable to form only four-coordinative bonds. The produced Ti-MOF is well characterized by X-ray photoelectron spectra (XPS), field emission scanning electron microscopy FE-SEM, transmission electron microscopy (TEM), atomic force microscopy (AFM), X-ray, UV/Vis. Spec-tra, Infrared absorption spectra (IR) and BET-specific surface area which found to be promising ultrahigh value of similar to 689 m(2)/g. (C) 2021 Elsevier B.V. All rights reserved.

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