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Electron Storage Capability and Singlet Oxygen Productivity of a RuII Photosensitizer Containing a Fused Naphthaloylenebenzene Moiety at the 1,10-Phenanthroline Ligand, , , , , and . Chemistry - a European journal, 26 (71): 17027-17034 (2020)Comprehensive Picture of the Excited State Dynamics of Cu(I)- and Ru(II)-Based Photosensitizers with Long-Lived Triplet States, , , , , , , , , and . Inorganic chemistry, 61 (1): 214-226 (2022)Determination of side products in the photocatalytic generation of hydrogen with copper photosensitizers by resonance Raman spectroelectrochemistry, , , , and . RSC advances, 6 (107): 105801-105805 (2016)How the Way a Naphthalimide Unit is Implemented Affects the Photophysical and -catalytic Properties of Cu(I) Photosensitizers, , , , , and . Frontiers in Chemistry, (2022)Cross-Coupled Phenyl- and Alkynyl-Based Phenanthrolines and Their Effect on the Photophysical and Electrochemical Properties of Heteroleptic Cu(I) Photosensitizers, , , , , and . Inorganic chemistry, 60 (7): 5391-5401 (2021)Cu(I) vs. Ru(II) photosensitizers : elucidation of electron transfer processes within a series of structurally related complexes containing an extended pi-system, , , , , , , , and . Physical Chemistry Chemical Physics, 20 (38): 24843-24857 (2018)Ultrafast excited state dynamics of iridium(III) complexes and their changes upon immobilisation onto titanium dioxide layers, , , , , , , and . Physical chemistry, chemical physics, 18 (16): 10682-10687 (2016)Heteroleptic diimine-diphosphine Cu(I) complexes as an alternative towards noble-metal based photosensitizers: Design strategies, photophysical properties and perspective applications, , , , and . Coordination Chemistry Reviews, (2018)Elucidating the Nature of the Excited State of a Heteroleptic Copper Photosensitizer by using Time-Resolved X-ray Absorption Spectroscopy, , , , , , , and . Chemistry : A European Journal, 24 (24): 6464-6472 (2018)Electronic and molecular structure relations in diiron compounds mimicking the FeFe-hydrogenase active site studied by X-ray spectroscopy and quantum chemistry, , , , , , , , , and 3 other author(s). Dalton transactions, 46 (37): 12544-12557 (2017)