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相选择性微波辅助合成氨基对苯二甲酸铁(III)金属有机框架材料

Phase-Selective Microwave Assisted Synthesis of Iron(III) Aminoterephthalate MOFs.

作者信息

Arenas-Vivo Ana, Avila David, Horcajada Patricia

机构信息

Advanced Porous Materials Unit, IMDEA Energy. Av. Ramón de la Sagra 3, 28935 Móstoles-Madrid, Spain.

Department of Inorganic Chemistry, Chemical Sciences Faculty, Complutense University of Madrid, 28040 Madrid, Spain.

出版信息

Materials (Basel). 2020 Mar 23;13(6):1469. doi: 10.3390/ma13061469.

Abstract

Iron(III) aminoterephthalate Metal-Organic Frameworks (Fe-BDC-NH MOFs) have been demonstrated to show potential for relevant industrial and societal applications (i.e., catalysis, drug delivery, gas sorption). Nevertheless, further analysis is required in order to achieve their commercial production. In this work, a systematic synthetic strategy has been followed, carrying out microwave (MW) assisted hydro/solvothermal reactions to rapidly evaluate the influence of different reaction parameters (e.g., time, temperature, concentration, reaction media) on the formation of the benchmarked MIL-101-NH, MIL-88B-NH, MIL-53-NH and MIL-68-NH solids. Characterization of the obtained solids by powder X-ray diffraction, dynamic light scattering and transmission electron microscopy allowed us to identify trends to the contribution of the evaluated parameters, such as the relevance of the concentration of precursors and the impact of the reaction medium on phase crystallization. Furthermore, we presented here for the first time the MW assisted synthesis of MIL-53-NH in water. In addition, pure MIL-101-NH was also produced in water while MIL-88-NH was the predominant phase obtained in ethanol. Pure phases were produced with high space-time yields, unveiling the potential of MW synthesis for MOF industrialization.

摘要

氨基对苯二甲酸铁金属有机框架材料(Fe-BDC-NH金属有机框架材料)已被证明在相关工业和社会应用(如催化、药物递送、气体吸附)中具有潜力。然而,为了实现其商业化生产,还需要进一步分析。在这项工作中,我们遵循了一种系统的合成策略,进行微波(MW)辅助水热/溶剂热反应,以快速评估不同反应参数(如时间、温度、浓度、反应介质)对基准MIL-101-NH、MIL-88B-NH、MIL-53-NH和MIL-68-NH固体形成的影响。通过粉末X射线衍射、动态光散射和透射电子显微镜对所得固体进行表征,使我们能够确定所评估参数的贡献趋势,例如前驱体浓度的相关性以及反应介质对相结晶的影响。此外,我们在此首次展示了在水中微波辅助合成MIL-53-NH。此外,在水中还制备出了纯的MIL-101-NH,而在乙醇中得到的主要相是MIL-88-NH。以高时空产率制备出了纯相,揭示了微波合成在金属有机框架材料工业化方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3ce/7142456/e7bbe2bd3c1c/materials-13-01469-g001.jpg

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