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实用金属有机框架纳米结构学:增强金属有机框架用于实际应用的可加工性的新策略

Practical MOF Nanoarchitectonics: New Strategies for Enhancing the Processability of MOFs for Practical Applications.

作者信息

Cheng Ping, Wang Chaohai, Kaneti Yusuf Valentino, Eguchi Miharu, Lin Jianjian, Yamauchi Yusuke, Na Jongbeom

机构信息

Jiangsu Key Laboratory of Chemical Pollution Control and Resources Reuse, School of Environmental and Biological Engineering, Nanjing University of Science and Technology, Nanjing 210094, People's Republic of China.

Key Laboratory of Eco-chemical Engineering, College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.

出版信息

Langmuir. 2020 Apr 28;36(16):4231-4249. doi: 10.1021/acs.langmuir.0c00236. Epub 2020 Apr 15.

Abstract

Over the past decades, the development of porous materials has directly or indirectly affected industrial production methods. Metal-organic frameworks (MOFs) as an emerging class of porous materials exhibit some unique advantages, including controllable composition, a large surface area, high porosity, and so on. These attractive characteristics of MOFs have led to their potential applications in energy storage and conversion devices, drug delivery, adsorption and storage, sensors, and other areas. However, powdered MOFs have limited practical applications owing to poor processability, safety hazards from dust formation, and poor recyclability. In addition, the inherent micro/mesoporosities of MOFs also reduce the accessibility and diffusion kinetics for large molecules. To improve their processability for practical applications, MOFs are often deposited as MOF layers or films (i.e., MOF-coated composites) on supporting materials or are formed into 3D structured composites, such as aerogels and hydrogels. In this article, we review recent researches on these MOF composites, including their synthetic methods and potential applications in energy storage devices, heavy metal ion adsorption, and water purification. Finally, the future outlook and challenges associated with the large-scale fabrication of MOF-based composites for practical applications are discussed.

摘要

在过去几十年中,多孔材料的发展直接或间接地影响了工业生产方式。金属有机框架材料(MOFs)作为一类新兴的多孔材料,展现出一些独特的优势,包括成分可控、比表面积大、孔隙率高等等。MOFs的这些吸引人的特性使其在能量存储与转换装置、药物递送、吸附与存储、传感器及其他领域具有潜在应用。然而,粉末状MOFs由于加工性能差、粉尘形成带来的安全隐患以及可回收性差,实际应用受到限制。此外,MOFs固有的微孔/介孔结构也降低了大分子的可及性和扩散动力学。为提高其在实际应用中的加工性能,MOFs通常以MOF层或膜(即MOF包覆复合材料)的形式沉积在支撑材料上,或形成三维结构复合材料,如气凝胶和水凝胶。在本文中,我们综述了近期关于这些MOF复合材料的研究,包括它们的合成方法以及在能量存储装置、重金属离子吸附和水净化方面的潜在应用。最后,讨论了与大规模制备用于实际应用的MOF基复合材料相关的未来展望和挑战。

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