John Moffat Kelly

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1973-2012 Chemsitry Trinity College - Dublin 
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"John Kelly"
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Keane PM, Zehe C, Poynton FE, et al. (2023) Correction: Time-resolved infra-red studies of photo-excited porphyrins in the presence of nucleic acids and in HeLa tumour cells: insights into binding site and electron transfer dynamics. Physical Chemistry Chemical Physics : Pccp
Keane PM, Zehe C, Poynton FE, et al. (2022) Time-resolved infra-red studies of photo-excited porphyrins in the presence of nucleic acids and in HeLa tumour cells: insights into binding site and electron transfer dynamics. Physical Chemistry Chemical Physics : Pccp
Keane PM, O'Sullivan K, Poynton FE, et al. (2020) Understanding the factors controlling the photo-oxidation of natural DNA by enantiomerically pure intercalating ruthenium polypyridyl complexes through TA/TRIR studies with polydeoxynucleotides and mixed sequence oligodeoxynucleotides. Chemical Science. 11: 8600-8609
Devereux S, Poynton F, Baptista F, et al. (2020) Caught in the Loop: Binding of the [Ru(phen)2(dppz)]2+ Light-Switch Compound to Quadruplex DNA in Solution informed by Time-Resolved Infrared Spectroscopy. Chemistry (Weinheim An Der Bergstrasse, Germany)
Baptista FR, Devereux SJ, Gurung SP, et al. (2020) The influence of loops on the binding of the [Ru(phen)dppz] light-switch compound to i-motif DNA structures revealed by time-resolved spectroscopy. Chemical Communications (Cambridge, England)
Keane PM, O'Sullivan K, Poynton FE, et al. (2020) Understanding the factors controlling the photo-oxidation of natural DNA by enantiomerically pure intercalating ruthenium polypyridyl complexes through TA/TRIR studies with polydeoxynucleotides and mixed sequence oligodeoxynucleotides Chemical Science. 11: 8600-8609
Keane PM, Tory J, Towrie M, et al. (2018) Spectro-electrochemical Studies on [Ru(TAP)(dppz)]-Insights into the Mechanism of its Photosensitized Oxidation of Oligonucleotides. Inorganic Chemistry
Keane PM, Kelly JM. (2018) Transient absorption and time-resolved vibrational studies of photophysical and photochemical processes in DNA-intercalating polypyridyl metal complexes or cationic porphyrins Coordination Chemistry Reviews. 364: 137-154
Cardin CJ, Kelly JM, Quinn SJ. (2017) Photochemically active DNA-intercalating ruthenium and related complexes - insights by combining crystallography and transient spectroscopy. Chemical Science. 8: 4705-4723
Kelly JM, Keane P, Hall J, et al. (2017) Inosine can increase DNA's susceptibility to photo-oxidation by a Ru(II) complex due to structural change in the minor groove. Chemistry (Weinheim An Der Bergstrasse, Germany)
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