Experimental evidence for the role of paramagnetic oxygen concentration on the decay of long-lived nuclear spin order
File(s)c9ra03748a.pdf (583.22 KB)
Published version
Author(s)
Erriah, Bryan
Elliott, Stuart J
Type
Journal Article
Abstract
Nuclear singlet lifetimes are often dependent on the quantity of paramagnetic oxygen species present in solution, although the extent to which quenching or removing molecular oxygen has on extending singlet lifetimes is typically an unknown factor. Here we investigate the behaviour of the singlet relaxation time constant as a function of the oxygen concentration in solution. An experimental demonstration is presented for a chemically inequivalent proton pair of the tripeptide alanine-glycine-glycine in solution. We introduce a simple methodology to ensure the solution is saturated with predetermined concentrations of oxygen gas prior to measurements of the singlet lifetime. Singlet lifetimes were measured by using the spin-lock induced crossing pulse sequence. We present a linear relationship between the amount of oxygen dissolved in solution and the singlet relaxation rate constant. Singlet relaxation was found to be ∼2.7 times less sensitive to relaxation induced by paramagnetic oxygen compared with longitudinal relaxation. The relaxation behaviour is described by using a model of correlated fluctuating fields. We additionally examine the extension of singlet lifetimes by doping solutions with the chelating agent sodium ascorbate, which scavenges oxygen radicals in solution.
Date Issued
2019-07-29
Date Acceptance
2019-07-09
Citation
RSC Advances: an international journal to further the chemical sciences, 2019, 9 (40), pp.23418-23424
ISSN
2046-2069
Publisher
The Royal Society of Chemistry
Start Page
23418
End Page
23424
Journal / Book Title
RSC Advances: an international journal to further the chemical sciences
Volume
9
Issue
40
Copyright Statement
© The Royal Society of Chemistry 2019. This article is licensed under aCreative Commons Attribution 3.0 Unported Licence (https://creativecommons.org/licenses/by/3.0/)
License URL
Identifier
https://www.ncbi.nlm.nih.gov/pubmed/35514498
PII: c9ra03748a
Publication Status
Published
Coverage Spatial
England
Date Publish Online
2019-07-29