mof -纳米复合材料和mof衍生(纳米)材料的最新技术,见解和观点

IF 27.4 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Stefanos Mourdikoudis, Subhajit Dutta, Saqib Kamal, Sergio Gómez-Graña, Isabel Pastoriza-Santos, Stefan Wuttke, Lakshminarayana Polavarapu
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引用次数: 0

摘要

本文综述了由金属-有机骨架(MOF)构成的复合结构。根据MOF平台之外的第二组分的性质,可能会产生几种协同特性;同时,通常保持了单一成分材料的初始特征,减轻了个别缺点。目前,及时的能源和环境挑战要求寻求更先进的材料和技术。mof纳米复合材料的重大发展使其应用于广泛的现代和传统领域。本文以详尽和关键的方式展示了广泛的MOF基纳米复合材料,即MOF/钙钛矿纳米颗粒(NPs), MOF/金属(非铁)氧化物NPs, MOF/Fe3O4 NPs, MOF/金属硫系NPs, MOF/金属NPs和MOF/碳基材料,以及MOF与其他半导体NPs的纳米复合材料。介绍了这些材料的合成、表征和应用等方面的关键问题。根据它们的结构,所讨论的复合材料可以应用于光化学传感、抗生素/染料降解、光电子学、光伏、催化、太阳能电池、超级电容器、电池、水修复和药物装载等领域。有时,mof可以经历某些过程(例如热解),并作为具有吸引人的特性的复合材料的前体。因此,手稿中的一个特殊部分专门用于mof衍生的NP复合材料。在本文结束时,我们得出结论,同时也描述了在本文分析的材料类别伞下进一步调查的挑战和可能性。尽管取得了进展,但关于这些材料的形态、性质和多价活性之间的关系的关键问题仍有待回答。目前的工作旨在阐明它们的大多数方面和创新前景,促进对潜在现象、功能和控制它们行为的机制见解的更深入理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

State-of-the-Art, Insights, and Perspectives for MOFs-Nanocomposites and MOF-Derived (Nano)Materials

State-of-the-Art, Insights, and Perspectives for MOFs-Nanocomposites and MOF-Derived (Nano)Materials
Composite structures created from metal‒organic framework (MOF) matrices are reviewed in this work. Depending on the nature of the second component apart from the MOF platform, several synergistic properties may arise; at the same time, the initial features of the single constituent materials are usually maintained, and individual shortcomings are mitigated. Currently, timely energy and environmental challenges necessitate the quest for more advanced materials and technologies. Significant developments in MOF-nanocomposites have enabled their application across a wide range of modern and traditional fields. This review demonstrates in an exhaustive and critical way a broad range of MOF-based nanocomposites, namely, MOF/perovskite nanoparticles (NPs), MOF/metal (non-iron) oxide NPs, MOF/Fe3O4 NPs, MOF/metal chalcogenide NPs, MOF/metal NPs, and MOF/carbon-based materials, as well as nanocomposites of MOFs with other semiconductor NPs. Key points related to the synthesis, characterization, and applications of these materials are provided. Depending on their configuration, the composites under discussion can be applied in domains such as photoelectrochemical sensing, antibiotic/dye degradation, optoelectronics, photovoltaics, catalysis, solar cells, supercapacitors, batteries, water remediation, and drug loading. Sometimes, MOFs can undergo certain processes (e.g. pyrolysis) and act as precursors for composite materials with appealing characteristics. Therefore, a special section in the manuscript is devoted to MOF-derived NP composites. Toward the end of the text, we conclude while also describing the challenges and possibilities for further investigations in the umbrella of material categories analyzed herein. Despite the progress achieved, key questions remain to be answered regarding the relationships among the morphology, properties, and polyvalent activity of these materials. The present work aims to shed light on most of their aspects and innovative prospects, facilitating a deeper comprehension of the underlying phenomena, functionality, and mechanistic insights governing their behavior.
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来源期刊
Advanced Materials
Advanced Materials 工程技术-材料科学:综合
CiteScore
43.00
自引率
4.10%
发文量
2182
审稿时长
2 months
期刊介绍: Advanced Materials, one of the world's most prestigious journals and the foundation of the Advanced portfolio, is the home of choice for best-in-class materials science for more than 30 years. Following this fast-growing and interdisciplinary field, we are considering and publishing the most important discoveries on any and all materials from materials scientists, chemists, physicists, engineers as well as health and life scientists and bringing you the latest results and trends in modern materials-related research every week.
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