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Multifunctional metal-organic frameworks: from academia to industrial applications

机译:多功能金属有机框架:从学术界到工业应用

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After three decades of intense and fundamental research on metal-organic frameworks (MOFs), is there anything left to say or to explain? The synthesis and properties of MOFs have already been comprehensively described elsewhere. It is time, however, to prove the nature of their true usability: technological applications based on these extended materials require development and implementation as a natural consequence of the up-to-known intensive research focused on their design and preparation. The current large number of reviews on MOFs emphasizes practical strategies to develop novel networks with varied crystal size, shape and topology, being mainly devoted to academic concerns. The present survey intends to push the boundaries and summarise the state-of-the-art on the preparation of promising (multi) functional MOFs in worldwide laboratories and their use as materials for industrial implementation. This review starts, on the one hand, to describe several tools and striking examples of remarkable and recent (multi) functional MOFs exhibiting outstanding properties (e.g., in gas adsorption and separation, selective sorption of harmful compounds, heterogeneous catalysis, luminescent and corrosion protectants). On the other hand, and in a second part, it intends to use these examples of MOFs to incite scientists to move towards the transference of knowledge from the laboratories to the industry. Within this context, we exhaustively review the many efforts of several worldwide commercial companies to bring functional MOFs towards the daily use, analysing the various patents and applications reported to date. Overall, this review goes from the very basic concepts of functional MOF engineering and preparation ending up in their industrial production on a large scale and direct applications in society.
机译:在对金属有机框架(MOF)进行了数十年的深入和基础研究之后,还有什么要说或要解释的吗? MOF的合成和性质已在其他地方进行了全面描述。然而,现在该证明它们真正的可用性的性质了:基于这些扩展材料的技术应用需要开发和实施,这是针对其设计和制备的最新深入研究的自然结果。当前有关MOF的大量评论都强调了开发具有不同晶体尺寸,形状和拓扑结构的新型网络的实用策略,这些网络主要致力于学术研究。本调查旨在突破界限,并总结了在全球实验室中准备有前途的(多功能)功能性MOF的最新技术,以及将其用作工业实施的材料。一方面,这篇综述开始描述具有杰出性能(例如,在气体吸附和分离,有害化合物的选择性吸附,非均相催化,发光和腐蚀防护剂方面)的杰出和近期(多)功能性MOF的几种工具和醒目示例。 )。另一方面,在第二部分中,它打算使用MOF的这些示例来鼓励科学家朝着从实验室向行业转移知识的方向发展。在此背景下,我们详尽地回顾了多家全球商业公司为使功能MOF逐步用于日常使用而进行的许多努力,并分析了迄今为止报道的各种专利和申请。总的来说,这篇评论来自功能性MOF工程和准备工作的最基本概念,这些概念最终在其大规模工业生产中直接在社会上应用。

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