Czaja Alexander U, Trukhan Natalia, Müller Ulrich
Chemicals Research and Engineering, GCC/PZ, BASF SE, California NanoSystems Institute, University of California, Los Angeles, 570 Westwood Plaza, Los Angeles, CA 90095, USA.
Chem Soc Rev. 2009 May;38(5):1284-93. doi: 10.1039/b804680h. Epub 2009 Mar 16.
New materials are prerequisite for major breakthrough applications influencing our daily life, and therefore are pivotal for the chemical industry. Metal-organic frameworks (MOFs) constitute an emerging class of materials useful in gas storage, gas purification and separation applications as well as heterogeneous catalysis. They not only offer higher surface areas and the potential for enhanced activity than currently used materials like base metal oxides, but also provide shape/size selectivity which is important both for separations and catalysis. In this critical review an overview of the potential applications of MOFs in the chemical industry is presented. Furthermore, the synthesis and characterization of the materials are briefly discussed from the industrial perspective (88 references).
新材料是影响我们日常生活的重大突破性应用的先决条件,因此对化学工业至关重要。金属有机框架(MOF)构成了一类新兴材料,可用于气体存储、气体净化与分离应用以及多相催化。它们不仅比目前使用的贱金属氧化物等材料具有更高的表面积和增强活性的潜力,而且还提供形状/尺寸选择性,这对分离和催化都很重要。在这篇批判性综述中,概述了MOF在化学工业中的潜在应用。此外,还从工业角度简要讨论了材料的合成与表征(88篇参考文献)。