The Syntheses and Vibrational Spectra of 16O- and 18O-Enriched cis-MO2 (M=Mo, W) Complexes
Peuronen, A., Sillanpää, R., & Lehtonen, A. (2018). The Syntheses and Vibrational Spectra of 16O- and 18O-Enriched cis-MO2 (M=Mo, W) Complexes. ChemistrySelect, 3(13), 3814-3818. https://doi.org/10.1002/slct.201800671
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ChemistrySelectPäivämäärä
2018Tekijänoikeudet
© 2018 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim. This is a final draft version of an article whose final and definitive form has been published by Wiley-VCH Verlag GmbH & Co. KGaA. Published in this repository with the kind permission of the publisher.
In this contribution, we report convenient synthetic approaches for obtaining 16O/18O‐enriched dioxidometalVI complexes, MO2(L) (W, Mo), with a linear, tetradentate amine phenolate ligand N,N′‐dimethyl‐N,N′‐bis(2‐hydroxy‐3,5‐dimethylbenzyl)ethylenediamine (H2L) and describe their characterization by IR and Raman spectroscopy complemented by DFT computational analysis. The isotopologues of WO2(L) were made of tungstenVI trisglycolate W(eg)3 (eg=1,2‐ethanediolate dianion) and ligand H2L in the presence of either H2[16O] or H2[18O], whereas Mo16O2(L) was made using Na2MoO4⋅2H2O which was converted to Mo18O2(L) by oxido substitution using H2[18O]. The complementary IR and Raman analyses show the ν(MO2)s and ν(MO2)a at 934 and 899 cm–1 for W16O2(L) and at 914 and 898 cm–1 for Mo16O2(L), respectively. In the vibrational spectra of the 18O substituted derivatives, the ν(MO2)s were shifted to lower energy by 43 cm–1 for W18O2(L) and by 41 cm–1 for Mo18O2(L) whereas asymmetric MO2 stretches in the IR were partially overlapped by an organic ligand related stretch. However, Raman spectroscopy, accompanied by DFT calculations, allowed the deciphering the ν(MO2)a shifts of 47 cm–1 for W18O2(L) and 31 cm–1 for Mo18O2(L).
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The authors would like to thank Mr. Rahul Yewale (Department of Chemistry, University of Turku) for the mass spectra and Professor Heikki Tuononen for the kind access to the computational resources at Department of Chemistry in University of Jyväskylä. A. P. kindly acknowledges the funding from Academy of Finland (project no. 277250).Samankaltainen aineisto
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