A Real-Time LSPR-Based Study of Metal-Organic Framework (MOF) Growth

被引:0
作者
Steinmueller, Lucie [1 ]
Csaki, Andrea [1 ]
Mertens, Florian [2 ]
Fritzsche, Wolfgang [1 ]
机构
[1] Leibniz Inst Photon Technol, Dept Nanobiophoton, Albert Einstein Str 9, D-07745 Jena, Germany
[2] TU Bergakademie Freiberg, Dept Phys Chem, Leipziger Str 29, D-09599 Freiberg, Germany
关键词
LSPR; Gold nanoparticles; Metal organic framework; THIN-FILM; MECHANISM;
D O I
10.1002/chem.202401188
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
MOFs are known for their absorption properties and widely used for accumulation, filtering, sensorics, photothermal, catalytical and other applications. Their combination with plasmonic metal nanoparticles leads to hybrid structures that profit from the stabilizing effect and high porosity of the MOF as well as the optical and electronic properties of the nanoparticles. The growth of MOFs on plasmonic nanoparticles can be monitored in-situ using LSPR spectroscopy, simultaneously applying microfluidic reaction conditions for the fabrication of NP@MOF structures. Here, a systematic study is conducted using LSPR spectroscopy for the monitoring of the Layer-by-Layer deposition of twelve different MOFs, determining the suitability of LSPR spectroscopy for this purpose. In addition to some well-investigated materials like HKUST-1, other MOFs such as MIL-53, MIL-88 A and Cu-BDC are deposited successfully. For some MOFs such as Zn-Fum, the LSPR experiment indicates that no deposition had taken place. The results are confirmed with AFM, SEM and XPS measurements. This work shows that LSPR spectroscopy is suitable for the in-situ monitoring of LbL MOF growth and the microfluidic setup is a very promising method for the controlled manufacturing of NP@MOF hybrid structures. Further studies may include the optimization of the synthesis process or the transfer to other materials. LSPR spectroscopy is applied to monitor the layer-by-layer like deposition of twelve different MOFs based on Cu, Al, Fe and Zn. The microfluidic setup of LSPR enables an in-situ spectroscopic readout based on the plasmonic properties of immobilized gold nanoparticle sensors under mild synthesis conditions. The MOF-coated nanoparticles can be used in gas sensing applications. image
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页数:5
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