Paramagnetic dioxovanadium(iv) molecules inside the channels of zeolite BEA – EPR screening of VO2 reactivity toward small gas-phase molecules
Author:
Affiliation:
1. Faculty of Chemistry
2. Jagiellonian University
3. 30-060 Krakow
4. Poland
Abstract
Unusual VO2 radicals inside the channels of SiBEA are capable of electron and oxygen transfer in reactions with NO, N2O, CO, and O2 forming, i.e., reactive oxygen species.
Funder
Narodowe Centrum Nauki
Publisher
Royal Society of Chemistry (RSC)
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://pubs.rsc.org/en/content/articlepdf/2016/CP/C6CP01046F
Reference50 articles.
1. Development of the coordination chemistry of vanadium through bis(acetylacetonato)oxovanadium(IV): synthesis, reactivity and structural aspects
2. Synthesis, characterization, reactivity and catalytic activity of oxidovanadium(iv), oxidovanadium(v) and dioxidovanadium(v) complexes of benzimidazole modified ligands
3. Spectroscopic characterization of vanadium(V) oxo species deposited on zirconia
4. Identification, Structure, and Spectroscopy of Neutral Vanadium Oxide Clusters
5. An electron spin resonance investigation of vanadium dioxide (51V16O2 and 51V17O2) and 51V17O in neon matrices with preliminary assignments for VO3 and V+2: Comparison with ab initio theoretical calculations
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