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水含量对基于锆卟啉的金属有机框架中物种形成和相形成的影响。

Influence of Water Content on Speciation and Phase Formation in Zr-Porphyrin-Based MOFs.

作者信息

Koschnick Charlotte, Terban Maxwell W, Canossa Stefano, Etter Martin, Dinnebier Robert E, Lotsch Bettina V

机构信息

Nanochemistry Department, Max Planck Institute for Solid State Research, Heisenbergstraße 1, 70569, Stuttgart, Germany.

Department of Chemistry, University of Munich, Butenandtstraße 5-13, 81377, Munich, Germany.

出版信息

Adv Mater. 2024 Mar;36(12):e2210613. doi: 10.1002/adma.202210613. Epub 2023 Apr 7.

Abstract

Controlled synthesis of phase-pure metal-organic frameworks (MOFs) is essential for their application in technological areas such as catalysis or gas sorption. Yet, knowledge of their phase formation and growth remain rather limited, particularly with respect to species such as water whose vital role in MOF synthesis is often neglected. As a consequence, synthetic protocols often lack reproducibility when multiple MOFs can form from the same metal source and linker, and phase mixtures are obtained with little or no control over their composition. In this work, the role of water in the formation of the Zr-porphyrin MOF disordered PCN-224 (dPCN-224) is investigated. Through X-ray total scattering and scanning electron microscopy, it is observed that dPCN-224 forms via a metal-organic intermediate that consists of ZrO(OH) clusters linked by tetrakis(4-carboxy-phenyl)porphyrin molecules. Importantly, water is not only essential to the formation of ZrO(OH) clusters, but it also plays a primary role in dictating the formation kinetics of dPCN-224. This multidisciplinary approach to studying the speciation of dPCN-224 provides a blueprint for how Zr-MOF synthesis protocols can be assessed and their reproducibility increased, and highlights the importance of understanding the role of water as a decisive component in Zr-MOF formation.

摘要

相纯金属有机框架材料(MOF)的可控合成对于其在催化或气体吸附等技术领域的应用至关重要。然而,人们对其相形成和生长的了解仍然相当有限,特别是对于水等物质,其在MOF合成中的关键作用常常被忽视。因此,当多种MOF可以由相同的金属源和连接体形成时,合成方案往往缺乏可重复性,并且会得到几乎无法控制其组成的相混合物。在这项工作中,研究了水在Zr-卟啉MOF无序PCN-224(dPCN-224)形成过程中的作用。通过X射线全散射和扫描电子显微镜观察到,dPCN-224是通过一种金属有机中间体形成的,该中间体由通过四(4-羧基苯基)卟啉分子连接的ZrO(OH)簇组成。重要的是,水不仅对于ZrO(OH)簇的形成至关重要,而且在决定dPCN-224的形成动力学方面也起着主要作用。这种研究dPCN-224物种形成的多学科方法为评估Zr-MOF合成方案以及提高其可重复性提供了蓝图,并突出了理解水作为Zr-MOF形成中决定性成分的作用的重要性。

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