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Photochemistry and Photobiology|May 14, 2025
Predicting head and neck tumor nodule responses to TLD1433 photodynamic therapy using the image-guided surgery probe ABY-029Chanda Bhandari, Siddharth Soma, Maxwell Quaye, et al.Inorganic Chemistry|December 25, 2025
Screening π-Extended Ruthenium(II) Complexes for the Photoinduced Oxidative Modulation of Amyloid-β Peptide AggregationGrace Leech, Isabella Bayly, Alisher Talgatov, et al.Photochemistry and Photobiology|October 16, 2025
Multifaceted Ru(II) arene systems for phototherapy display activity in lung cancer and melanomaJoseph Spiconardi, Dmytro Havrylyuk, Ge Shi, et al.Inorganic Chemistry|November 19, 2025
Impact of Metal Center on Photophysics and <i>In Vitro</i> Photodynamic Therapeutic Activities of Ru(II)/Os(II)/Ir(III) Bis-terpyridine Complexes Bearing Oligothienyl SubstituentsXinyang Sun, Ge Shi, Victoria Oas, et al.Inorganic Chemistry|October 23, 2024
Hypoxia-Active Iridium(III) Bis-terpyridine Complexes Bearing Oligothienyl Substituents: Synthesis, Photophysics, and Phototoxicity toward Cancer CellsXinyang Sun, Houston D Cole, Ge Shi, et al.Photochemistry and Photobiology|May 13, 2025
Image-based treatment planning for TLD1433 mediated intraoperative photodynamic therapy with an optical surface applicator-A translational rodent studySarah Chamberlain, Ge Shi, Sandra Sexton, et al.Inorganic Chemistry|May 10, 2024
Ru(II) Oligothienyl Complexes with Fluorinated Ligands: Photophysical, Electrochemical, and Photobiological PropertiesHouston D Cole, Abbas Vali, John A Roque, et al.Journal of Inorganic Biochemistry|January 6, 2026
Conjugation-driven modulation of excited-state dynamics and photobiological activity in Ru(II) bis-terpyridyl oligothienyl complexesAlisher Talgatov, Ge Shi, Gurleen Kaur, et al.Pageof 1