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金属有机框架材料(MOFs)、共价有机框架材料(COFs)及相关复合材料的喷雾干燥合成

Spray-Drying Synthesis of MOFs, COFs, and Related Composites.

作者信息

Troyano Javier, Çamur Ceren, Garzón-Tovar Luis, Carné-Sánchez Arnau, Imaz Inhar, Maspoch Daniel

机构信息

Catalan Institute of Nanoscience and Nanotechnology (ICN2), CSIC and Barcelona Institute of Science and Technology, Campus UAB, Bellaterra 08193, Barcelona Spain.

ICREA, Pg. Lluı́s Companys 23, 08010 Barcelona, Spain.

出版信息

Acc Chem Res. 2020 Jun 16;53(6):1206-1217. doi: 10.1021/acs.accounts.0c00133. Epub 2020 Jun 4.

Abstract

ConspectusMetal-organic frameworks (MOFs) and covalent organic frameworks (COFs) are among the most attractive porous materials today. They exhibit outstanding porosity for countless applications such as gas storage, CO capture, gas separation, sensing, drug delivery, and catalysis. Moreover, researchers have recently begun to combine MOFs or COFs with other functional materials to obtain composites that boast the respective strengths, and mitigate the respective weaknesses, of each component, enabling enhanced performance in many of the aforementioned applications. Accordingly, development of methods for fabrication of MOFs, COFs, and related composites is important for facilitating adoption of these materials in industry. One promising synthetic technique is , which is already well-integrated in manufacturing processes for diverse sectors. It enables rapid, continuous and scalable production of dry microspherical powders in a single step, leading to lower fabrication costs and shorter production times compared to traditional methods.In this Account, we outline our ongoing work on spray-drying synthesis of crystalline porous MOFs, COFs, and related composites. Versatile and tunable, spray-drying can be adapted to perform reactions involving coordination and covalent chemistry for the synthesis of micrometer spherical beads/superstructures of MOFs and COFs. Likewise, MOF- and COF-based composites can be synthesized using similar conditions as those for pure MOFs or COFs, through the simple introduction of additional functional materials into the feed precursor solution or colloid. Interestingly, spray-drying can also be done in water, thus providing the basis for its use as a scalable green method for industrial fabrication of these materials. To date, spray-drying has already been scaled up for pilot production (kilogram scale) of MOFs.

摘要

综述

金属有机框架材料(MOFs)和共价有机框架材料(COFs)是当今最具吸引力的多孔材料之一。它们具有出色的孔隙率,可用于无数应用,如气体存储、二氧化碳捕获、气体分离、传感、药物递送和催化。此外,研究人员最近开始将MOFs或COFs与其他功能材料结合,以获得兼具各组分优点并减轻各自缺点的复合材料,从而在许多上述应用中实现性能增强。因此,开发MOFs、COFs及相关复合材料的制备方法对于推动这些材料在工业中的应用至关重要。一种有前景的合成技术是喷雾干燥,它已很好地融入了多个行业的制造过程。与传统方法相比,它能够在一步中快速、连续且可扩展地生产干燥的微球形粉末,从而降低制造成本并缩短生产时间。

在本综述中,我们概述了我们正在进行的关于喷雾干燥合成结晶多孔MOFs、COFs及相关复合材料的工作。喷雾干燥具有通用性和可调性,可用于进行涉及配位和共价化学的反应,以合成MOFs和COFs的微米级球形珠粒/超结构。同样,基于MOF和COF的复合材料可以通过在进料前驱体溶液或胶体中简单引入额外的功能材料,使用与纯MOFs或COFs相似的条件来合成。有趣的是,喷雾干燥也可以在水中进行,从而为其作为这些材料工业制造的可扩展绿色方法提供了基础。迄今为止,喷雾干燥已扩大规模用于MOFs的中试生产(千克级)。

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