In Situ FTIR Spectroscopy for Scanning Accessible Active Sites in Defect-Engineered UiO-66

In situ FTIR-спектроскопия для сканирования доступных активных центров в дефект-инициированном UiO-66
Konstantin Hadjiivanov, Pavletta Shestakova, Vera V. Butova, Videlina R. Zdravkova, Olga A. Burachevskaia, Andrei A. Tereshchenko
2023-05-18

UiO-66bridging μ3-OH groupsdefect engineeringin situ FTIR spectroscopyopen Zr sites
Three UiO-66 samples were prepared by solvothermal synthesis using the defect engineering approach with benzoic acid as a modulator. They were characterized by different techniques and their acidic properties were assessed by FTIR spectroscopy of adsorbed CO and CD3CN. All samples evacuated at room temperature contained bridging μ3-OH groups that interacted with both probe molecules. Evacuation at 250 °C leads to the dehydroxylation and disappearance of the μ3-OH groups. Modulator-free synthesis resulted in a material with open Zr sites. They were detected by low-temperature CO adsorption on a sample evacuated at 200 °C and by CD3CN even on a sample evacuated at RT. However, these sites were lacking in the two samples obtained with a modulator. IR and Raman spectra revealed that in these cases, the Zr4+ defect sites were saturated by benzoates, which prevented their interaction with probe molecules. Finally, the dehydroxylation of all samples produced another kind of bare Zr sites that did not interact with CO but formed complexes with acetonitrile, probably due to structural rearrangement. The results showed that FTIR spectroscopy is a powerful tool for investigating the presence and availability of acid sites in UiO-66, which is crucial for its application in adsorption and catalysis.
1
Dehydroxylation creates a different type of bare Zr site that does not interact with CO but does bind acetonitrile, likely due to structural rearrangement.
2
Evacuation at 250 °C causes dehydroxylation and disappearance of μ3-OH groups in all samples.
3
FTIR spectroscopy of adsorbed probes is an effective method to detect presence and accessibility of acid sites in UiO-66 relevant for adsorption and catalysis applications.
4
Modulator-free UiO-66 shows open Zr sites detectable by low-temperature CO adsorption (after 200 °C evacuation) and by CD3CN even after room-temperature evacuation.
5
UiO-66 samples synthesized with benzoic acid lack accessible Zr4+ defect sites because benzoates saturate these sites, preventing probe interaction.
6
UiO-66 samples synthesized with benzoic acid modulator contain μ3-OH bridging groups at room-temperature evacuation that interact with both CO and CD3CN probes.

Defect-engineered UiO-66 metal–organic framework samples prepared with and without benzoic acid modulator

Presence, accessibility and chemical nature of acidic sites (μ3-OH bridging groups, open/saturated Zr4+ sites and dehydroxylation-generated bare Zr sites) probed by in situ FTIR spectroscopy using adsorbed CO and CD3CN under different evacuation temperatures

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2023-05-18
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Konstantin Hadjiivanov
Pavletta Shestakova
Vera V. Butova
Videlina R. Zdravkova
Olga A. Burachevskaia
Andrei A. Tereshchenko
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