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一氧化碳和温度诱导的带有表面安装纳米颗粒的柔性金属有机框架的开关效应

CO and Temperature Induced Switching of a Flexible Metal-Organic Framework with Surface-Mounted Nanoparticles.

作者信息

Berger Jan, Terruzzi Stephanie, Bunzen Hana, Ballerini Filippo, Vandone Marco, Marelli Marcello, Braglia Luca, Fischer Roland A, Colombo Valentina, Kieslich Gregor

机构信息

Technical University of Munich, TUM School of Natural Sciences, Department of Chemistry, Lichtenbergstr. 4, 85748, Garching, Germany.

Department of Chemistry and INSTM, UdR Milano, University of Milan, Via Golgi 19, Milan, 20133, Italy.

出版信息

Small. 2025 Feb;21(6):e2408137. doi: 10.1002/smll.202408137. Epub 2025 Jan 7.

Abstract

Within the material family of metal-organic frameworks (MOFs) the subclass of flexible MOFs (flexMOFs) has attracted great attention, showing structural flexibility as a response to external stimuli such as guest adsorption, temperature, and pressure. Hybrid composites like nanoparticle (NP) loaded flexible MOFs, which stand to potentially combine advantageous properties of both are yet largely unexplored. Here the synthesis of flexMOFs with surface mounted nanoparticles, e. g. NP@Zn(BME-bdc)dabco composites (NP = Pt and SiO nanoparticles, BME-bdc = 2,5-bismethoxyethoxy-1,4-benzenedicarboxylate, dabco = 1,4-diazabicyclo[2.2.2]octane) is reported, studying the impact of nanoparticles on the stimulus-responsiveness of a flexMOF. It is shown that CO physisorption triggered flexibility of the MOF is retained and reversible for all NP@flexMOF composites. Additionally, it is observed that NPs stabilize the large pore state of the MOF, slightly increasing and shifting the switching pressure window. This effect is also observed during temperature-induced switching but Pt@flexMOF composites partially lose long-range order during the reversion to their narrow pore state, while attached SiO NPs allow for a fully reversible transition. These findings suggest that the total exerted material strain triggering the switching is heavily dependent on NP size and the applied stimulus and that guest-induced switchability can be fully realized in NP@flexMOF hybrid materials.

摘要

在金属有机框架(MOF)材料家族中,柔性MOF(flexMOF)子类备受关注,它能对诸如客体吸附、温度和压力等外部刺激做出响应,展现出结构灵活性。像负载纳米颗粒(NP)的柔性MOF这类杂化复合材料,有望结合两者的优势特性,但目前在很大程度上仍未得到充分探索。本文报道了表面负载纳米颗粒的flexMOF的合成,例如NP@Zn(BME-bdc)dabco复合材料(NP = Pt和SiO纳米颗粒,BME-bdc = 2,5-双甲氧基乙氧基-1,4-苯二甲酸酯,dabco = 1,4-二氮杂双环[2.2.2]辛烷),并研究了纳米颗粒对flexMOF刺激响应性的影响。结果表明,对于所有NP@flexMOF复合材料,由CO物理吸附引发的MOF柔性得以保留且具有可逆性。此外,还观察到NP稳定了MOF的大孔状态,略微增大并移动了转变压力窗口。在温度诱导的转变过程中也观察到了这种效应,但Pt@flexMOF复合材料在恢复到窄孔状态时部分失去了长程有序性,而附着的SiO NPs则实现了完全可逆的转变。这些发现表明,触发转变的总材料应变在很大程度上取决于NP尺寸和所施加的刺激,并且在NP@flexMOF杂化材料中可以充分实现客体诱导的可切换性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6f3/11817923/dd3202643174/SMLL-21-2408137-g002.jpg

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