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混合金属金属有机框架

Mixed-metal metal-organic frameworks.

作者信息

Abednatanzi Sara, Gohari Derakhshandeh Parviz, Depauw Hannes, Coudert François-Xavier, Vrielinck Henk, Van Der Voort Pascal, Leus Karen

机构信息

Center for Ordered Materials, Organometallics and Catalysis, Ghent University, Krijgslaan 281-S3, 9000 Gent, Belgium.

出版信息

Chem Soc Rev. 2019 May 7;48(9):2535-2565. doi: 10.1039/c8cs00337h.

Abstract

Mixed-metal MOFs are metal-organic frameworks that contain at least 2 different metal ions as nodes of their frameworks. They are prepared relatively easily by either a one-pot synthesis with a synthesis mixture containing the different metals, or by a post-synthetic ion-exchange method by soaking a monometallic MOF in a concentrated solution of a different (but compatible) metal-ion. More difficult is the accurate characterization of these materials. Is the formed product a mixture of monometallic MOFs or indeed a MOF with different metallic nodes? Are the metals randomly distributed or do they form domains? What is the oxidation state of the metals? How do the metals mutually influence each other, and impact the material's performance? Advanced characterization techniques are required e.g. X-ray absorption spectroscopy, magnetic resonance and electron microscopy. Computational tools at multiple scales are also often applied. In almost every case, a judicious choice of several techniques is required to unambiguously characterize the mixed-metal MOF. Although still in their infancy, several applications are emerging for mixed-metal MOFs, that improve on conventional monometallic MOFs. In the field of gas sorption and storage, especially the stability and affinity towards the target gases can be largely improved by introducing a second metal ion. In the case of flexible MOFs, the breathing behavior, and in particular the pressure at which the MOF opens, can be tailored. In heterogeneous catalysis, new cascade and tandem reactions become possible, with particular focus on reactions where the two metals in close proximity truly form a mixed-metal transition state. The bimetallic MOF should have a clear benefit over a mixture of the respective monometallic MOFs, and bimetallic enzymes can be a huge source of inspiration in this field. Another very promising application lies in the fields of luminescence and sensing. By tuning the lanthanide metals in mixed-metal lanthanide MOFs and by using the organic linkers as antennae, novel smart materials can be developed, acting as sensors and as thermochromic thermometers. Of course there are also still open challenges, as also mixed-metal MOFs do not escape the typical drawbacks of MOFs, such as low stability in moisture and possible metal leaching in liquids. The ease of synthesis of mixed-metal MOFs is a large bonus. In this critical review, we discuss in detail the synthesis, characterization, computational work and applications of mixed-metal MOFs.

摘要

混合金属金属有机框架材料(Mixed-metal MOFs)是指其框架结构节点中包含至少两种不同金属离子的金属有机框架材料。它们相对容易制备,既可以通过一锅法合成,即将含有不同金属的合成混合物进行反应,也可以通过后合成离子交换法,即将单金属MOF浸泡在不同(但兼容)金属离子的浓溶液中。然而,对这些材料进行准确表征却较为困难。所形成的产物是单金属MOF的混合物,还是确实是具有不同金属节点的MOF?金属是随机分布的,还是形成了不同的区域?金属的氧化态是多少?金属之间如何相互影响并影响材料的性能?这需要先进的表征技术,例如X射线吸收光谱、磁共振和电子显微镜等。还经常应用多尺度的计算工具。几乎在每种情况下,都需要明智地选择几种技术才能明确地表征混合金属MOF。尽管混合金属MOF仍处于起步阶段,但已经出现了一些优于传统单金属MOF的应用。在气体吸附和存储领域,特别是通过引入第二种金属离子,可以大大提高对目标气体的稳定性和亲和力。对于柔性MOF,其呼吸行为,尤其是MOF打开时的压力,可以进行调整。在多相催化中,新的级联和串联反应成为可能,特别关注两种金属紧密相邻真正形成混合金属过渡态的反应。双金属MOF应该比各自单金属MOF的混合物具有明显优势,并且双金属酶可能是该领域的巨大灵感来源。另一个非常有前景的应用在于发光和传感领域。通过调节混合金属镧系MOF中的镧系金属,并将有机连接体用作天线,可以开发出新型智能材料,用作传感器和热致变色温度计。当然仍然存在一些尚未解决的挑战,因为混合金属MOF也无法避免MOF的典型缺点,例如在潮湿环境中稳定性低以及在液体中可能发生金属浸出。混合金属MOF易于合成是一个很大的优势。在这篇批判性综述中,我们详细讨论了混合金属MOF的合成、表征、计算研究和应用。

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