Substitution of both oxygen atoms in the exocyclic carbonyl groups of the thymine chromophore by sulfur atoms results in a remarkable redshift of its absorption spectrum from an absorption maximum at 267 nm in thymidine to 363 nm in 2,4-dithiothymine (Δ<i>E</i> = 9905 cm<sup>–1</sup>). A single sulfur substitution of a carbonyl group in the thymine chromophore at position 2 or 4 results in a significantly smaller redshift in the absorption maximum, which depends sensitively on the position at which the sulfur atom is substituted, varying from 275 nm in 2-thiothymine to 335 nm in 4-thiothymidine. Femtosecond transient absorption spectroscopy reveals that excitation of 2,4-dithiothymine at 335 or 360 nm leads to the ultrafast population of th...
Thionated nucleobases are obtained by replacing oxygen with sulphur atoms in the canonical nucleobas...
Intensified research interests are posed with the thionucleobase 4-thiouracil (4-TU), due to its imp...
5-Substituted-4-thio-2’-deoxyuridine nucleosides have been chemically synthesized and studied by NMR...
WOS:000381778400004International audienceRecent experiments replacing oxygen atoms by sulfur in thym...
International audienceRecent experiments replacing oxygen atoms by sulfur in thymine have revealed t...
Ultrafast intersystem crossing of UVA-sensitive 4-thiothymidine in aqueous solution was investigated...
Excited-state dynamics of 4-thiothymidine (S4-TdR) and its photosensitization to molecular oxygen in...
Substitution of oxygen by a sulfur atom in the natural DNA and RNA bases gives rise to a family of d...
Photosensitization of DNA by thionucleosides is a promising photo-chemotherapeutic treatment option ...
International audienceThe ultraviolet (UV) photophysics of the natural and modified nucleobases can ...
Elucidating the photophysical mechanisms in sulfur-substituted nucleobases (thiobases) is essential ...
Thiothymidine has a potential application as a photosensitizer in cancer photodynamic therapy (PDT)....
Motivated by its potential use as a photosensitizer in photodynamic therapy, we report the first ab ...
The pH-related characteristics of 4-thiothymidine and its stability during prolonged exposure, at ro...
Sulfur-substituted DNA and RNA nucleobase derivatives (a.k.a., thiobases) are an important family of...
Thionated nucleobases are obtained by replacing oxygen with sulphur atoms in the canonical nucleobas...
Intensified research interests are posed with the thionucleobase 4-thiouracil (4-TU), due to its imp...
5-Substituted-4-thio-2’-deoxyuridine nucleosides have been chemically synthesized and studied by NMR...
WOS:000381778400004International audienceRecent experiments replacing oxygen atoms by sulfur in thym...
International audienceRecent experiments replacing oxygen atoms by sulfur in thymine have revealed t...
Ultrafast intersystem crossing of UVA-sensitive 4-thiothymidine in aqueous solution was investigated...
Excited-state dynamics of 4-thiothymidine (S4-TdR) and its photosensitization to molecular oxygen in...
Substitution of oxygen by a sulfur atom in the natural DNA and RNA bases gives rise to a family of d...
Photosensitization of DNA by thionucleosides is a promising photo-chemotherapeutic treatment option ...
International audienceThe ultraviolet (UV) photophysics of the natural and modified nucleobases can ...
Elucidating the photophysical mechanisms in sulfur-substituted nucleobases (thiobases) is essential ...
Thiothymidine has a potential application as a photosensitizer in cancer photodynamic therapy (PDT)....
Motivated by its potential use as a photosensitizer in photodynamic therapy, we report the first ab ...
The pH-related characteristics of 4-thiothymidine and its stability during prolonged exposure, at ro...
Sulfur-substituted DNA and RNA nucleobase derivatives (a.k.a., thiobases) are an important family of...
Thionated nucleobases are obtained by replacing oxygen with sulphur atoms in the canonical nucleobas...
Intensified research interests are posed with the thionucleobase 4-thiouracil (4-TU), due to its imp...
5-Substituted-4-thio-2’-deoxyuridine nucleosides have been chemically synthesized and studied by NMR...