Issue 20, 2023

UiO-66 framework with an encapsulated spin probe: synthesis and exceptional sensitivity to mechanical pressure

Abstract

Probes sensitive to mechanical stress are in demand for the analysis of pressure distribution in materials, and the design of pressure sensors based on metal–organic frameworks (MOFs) is highly promising due to their structural tunability. We report a new pressure-sensing material, which is based on the UiO-66 framework with trace amounts of a spin probe (0.03 wt%) encapsulated in cavities. To obtain this material, we developed an approach for encapsulation of stable nitroxide radical TEMPO ((2,2,6,6-tetramethylpiperidin-1-yl)oxyl) into the micropores of UiO-66 during its solvothermal synthesis. Pressure read-out using electron paramagnetic resonance (EPR) spectroscopy allows monitoring the degradation of the defected MOF structure upon pressurization, where full collapse of pores occurs at as low a pressure as 0.13 GPa. The developed methodology can be used in and ex situ and provides sensitive tools for non-destructive mapping of pressure effects in various materials.

Graphical abstract: UiO-66 framework with an encapsulated spin probe: synthesis and exceptional sensitivity to mechanical pressure

Supplementary files

Article information

Article type
Paper
Submitted
07 Mar 2023
Accepted
15 Apr 2023
First published
20 Apr 2023

Phys. Chem. Chem. Phys., 2023,25, 13846-13853

UiO-66 framework with an encapsulated spin probe: synthesis and exceptional sensitivity to mechanical pressure

A. S. Poryvaev, K. P. Larionov, Y. N. Albrekht, A. A. Efremov, A. S. Kiryutin, K. A. Smirnova, V. Y. Evtushok and M. V. Fedin, Phys. Chem. Chem. Phys., 2023, 25, 13846 DOI: 10.1039/D3CP01063E

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