Mysore Ramesha Bharadwaj, Meynen Vera
Laboratory of Adsorption and Catalysis (LADCA), Department of Chemistry, University of Antwerp, Universiteitsplein 1, 2610 Wilrijk, Belgium.
Materials (Basel). 2020 Nov 26;13(23):5366. doi: 10.3390/ma13235366.
In the expansive world of porous hybrid materials, a category of materials that has been rather less explored than others and is gaining attention in development is the porous metal phosphonates. They offer promising features towards applications which demand control over the inorganic-organic network and interface, which is critical for adsorption, catalysis and functional devices and technology. The need to establish a rationale for new synthesis approaches to make these materials in a controlled manner is by itself an important motivation for material chemists. In this review, we highlight the various synthetic strategies exploited, discussing various metal phosphonate systems and how they influence the properties of porous metal phosphonates. We discuss porous metal phosphonate systems based on transition metals with an emphasis on addressing challenges with tetravalent metals. Finally, this review provides a brief description of some key areas of application that are ideally suited for porous metal phosphonates.
在多孔杂化材料这个广阔的领域中,多孔金属膦酸盐是一类相较于其他材料研究较少但在开发过程中日益受到关注的材料。它们在需要控制无机 - 有机网络及界面的应用方面展现出了有前景的特性,而这对于吸附、催化以及功能器件和技术至关重要。以可控方式制备这些材料的新合成方法的基本原理的确立,本身就是材料化学家的一个重要动力。在这篇综述中,我们重点介绍了所采用的各种合成策略,讨论了各种金属膦酸盐体系以及它们如何影响多孔金属膦酸盐的性能。我们讨论了基于过渡金属的多孔金属膦酸盐体系,重点关注解决四价金属相关的挑战。最后,本综述简要描述了一些非常适合多孔金属膦酸盐的关键应用领域。