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Samuel Ward
Samuel Ward
Verified email at oakland.edu
Title
Cited by
Cited by
Year
Electron-Mediated Aminyl and Iminyl Radicals from C5 Azido-Modified Pyrimidine Nucleosides Augment Radiation Damage to Cancer Cells
Z Wen, J Peng, PR Tuttle, Y Ren, C Garcia, D Debnath, S Rishi, C Hanson, ...
Organic letters 20 (23), 7400-7404, 2018
182018
One Way Traffic: Base‐to‐Backbone Hole Transfer in Nucleoside Phosphorodithioate
R Kaczmarek, S Ward, D Debnath, T Jacobs, AD Stark, D Korczyński, ...
Chemistry–A European Journal, 2020
72020
Ne-22 Ion-Beam Radiation Damage to DNA: From Initial Free Radical Formation to Resulting DNA-Base Damage
M Kant, P Jaruga, E Coskun, S Ward, AD Stark, T Baumann, D Becker, ...
ACS omega 6 (25), 16600-16611, 2021
52021
Site of Azido Substitution in the Sugar Moiety of Azidopyrimidine Nucleosides Influences the Reactivity of Aminyl Radicals Formed by Dissociative Electron Attachment
M Mudgal, TP Dang, AJ Sobczak, DA Lumpuy, P Dutta, S Ward, K Ward, ...
The Journal of Physical Chemistry B 124 (50), 11357-11370, 2020
52020
Modulation of the Directionality of Hole Transfer between the Base and the Sugar-Phosphate Backbone in DNA with the Number of Sulfur Atoms in the Phosphate Group
SA Denisov, S Ward, V Shcherbakov, AD Stark, R Kaczmarek, ...
The Journal of Physical Chemistry B, 2022
32022
Ion-beam radiation damage to DNA by investigation of free radical formation and base damage
M Kant, P Jaruga, E Coskun, S Ward, A Stark, D Becker, A Adhikary, ...
2020
One Way Traffic: Base‐to‐backbone Hole Transfer in Nucleoside Phosphorodithioates
R Dembinski, R Kaczmarek, S Ward, D Debnath, T Jacobs, A Stark, ...
Chemistry–A European Journal, 2020
2020
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