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Lanthanide-Centered Polyoxoalkoxide Complexes Provide a Platform for Systematic Room- and Variable-Temperature
Dominic Shiels1, Nadeeshan Gunarathna1, William W Brennessel1
1Department of Chemistry, University of Rochester, Rochester, New York 14627, United States.
A new series of lanthanide (Ln) polyoxometalate complexes were synthesized and found to be isostructural across the entire series. These complexes exhibit temperature-dependent NMR shifts, enabling potential applications in 17O NMR thermometry.
Area of Science:
- Inorganic Chemistry
- Materials Science
- Supramolecular Chemistry
Background:
- Lanthanide (Ln) containing polyoxometalates are of interest for their unique electronic and magnetic properties.
- Previous Ln-containing polyoxometalate series often exhibit structural variations across the lanthanide series.
- The development of isostructural Ln-polyoxometalates is crucial for systematic studies and applications.
Purpose of the Study:
- To synthesize a complete series of lanthanide-containing polyoxoalkoxide sandwich-type complexes.
- To investigate the structural and spectroscopic properties of these complexes.
- To explore the potential of these complexes for 17O NMR thermometry.
Main Methods:
- High-yielding synthesis of (TBA)3[M{Mo5O13(OMe)4NO}2] complexes (M = La-Lu, except Pm).
- Characterization using solution-state 1H/17O NMR, IR spectroscopy, cyclic voltammetry, and electronic absorption spectroscopy.
- Single crystal X-ray diffraction for new derivatives (Tm, Yb, Lu, Y).
Main Results:
- All synthesized (TBA)3[M{Mo5O13(OMe)4NO}2] complexes are isostructural in the solid-state, a unique feature attributed to the large tetrabutylammonium cations.
- Solution-state NMR revealed significant lanthanide-induced shifts (100-2000 ppm) for 17O nuclei directly bound to the Ln center.
- Variable temperature 17O NMR spectroscopy demonstrated a notable temperature dependence of these chemical shifts.
Conclusions:
- The synthesized lanthanide polyoxometalate series offers a structurally uniform platform for fundamental studies.
- The observed temperature-dependent 17O NMR signals present a promising avenue for developing 17O NMR thermometers.
- This work expands the scope of lanthanide-containing polyoxometalates and their potential applications in sensing.
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