Multi‐photon excitation in photoredox catalysis: concepts, applications, methods F Glaser, C Kerzig, OS Wenger Angewandte Chemie International Edition 59 (26), 10266-10284, 2020 | 288 | 2020 |
Unexpected hydrated electron source for preparative visible-light driven photoredox catalysis C Kerzig, X Guo, OS Wenger Journal of the American Chemical Society 141 (5), 2122-2127, 2019 | 141 | 2019 |
Manganese(i) complexes with metal-to-ligand charge transfer luminescence and photoreactivity P Herr, C Kerzig, CB Larsen, D Häussinger, OS Wenger Nature Chemistry 13 (10), 956-962, 2021 | 108 | 2021 |
UV light generation and challenging photoreactions enabled by upconversion in water B Pfund, DM Steffen, MR Schreier, MS Bertrams, C Ye, K Börjesson, ... Journal of the American Chemical Society 142 (23), 10468-10476, 2020 | 102 | 2020 |
Rhodamine B conjugates of triterpenoic acids are cytotoxic mitocans even at nanomolar concentrations S Sommerwerk, L Heller, C Kerzig, AE Kramell, R Csuk European Journal of Medicinal Chemistry 127, 1-9, 2017 | 100 | 2017 |
Sensitized triplet–triplet annihilation upconversion in water and its application to photochemical transformations C Kerzig, OS Wenger Chemical science 9 (32), 6670-6678, 2018 | 97 | 2018 |
A Photorobust Mo(0) Complex Mimicking [Os(2,2′-bipyridine)3]2+ and Its Application in Red-to-Blue Upconversion JB Bilger, C Kerzig, CB Larsen, OS Wenger Journal of the American Chemical Society 143 (3), 1651-1663, 2021 | 76 | 2021 |
Combining energy and electron transfer in a supramolecular environment for the “green” generation and utilization of hydrated electrons through photoredox catalysis C Kerzig, M Goez Chemical Science 7 (6), 3862-3868, 2016 | 76 | 2016 |
Reactivity control of a photocatalytic system by changing the light intensity C Kerzig, OS Wenger Chemical Science 10 (48), 11023-11029, 2019 | 68 | 2019 |
Modulation of acridinium organophotoredox catalysts guided by photophysical studies C Fischer, C Kerzig, B Zilate, OS Wenger, C Sparr ACS Catalysis 10 (1), 210-215, 2019 | 59 | 2019 |
Triplet energy transfer from ruthenium complexes to chiral eniminium ions: enantioselective synthesis of cyclobutanecarbaldehydes by [2+ 2] photocycloaddition FM Hörmann, C Kerzig, TS Chung, A Bauer, OS Wenger, T Bach Angewandte Chemie 132 (24), 9746-9755, 2020 | 57 | 2020 |
An “all‐green” catalytic cycle of aqueous photoionization M Goez, C Kerzig, R Naumann Angewandte Chemie 126 (37), 10072-10074, 2014 | 57 | 2014 |
Sensitization-initiated electron transfer via upconversion: mechanism and photocatalytic applications F Glaser, C Kerzig, OS Wenger Chemical Science 12 (29), 9922-9933, 2021 | 56 | 2021 |
Photostable ruthenium (II) isocyanoborato luminophores and their use in energy transfer and photoredox catalysis L Schmid, C Kerzig, A Prescimone, OS Wenger JACS Au 1 (6), 819-832, 2021 | 52 | 2021 |
Efficient Triplet‐Triplet Annihilation Upconversion Sensitized by a Chromium (III) Complex via an Underexplored Energy Transfer Mechanism C Wang, F Reichenauer, WR Kitzmann, C Kerzig, K Heinze, ... Angewandte Chemie International Edition 61 (27), e202202238, 2022 | 51 | 2022 |
Aryl dechlorination and defluorination with an organic super-photoreductant F Glaser, CB Larsen, C Kerzig, OS Wenger Photochemical & Photobiological Sciences 19, 1035-1041, 2020 | 45 | 2020 |
Laboratory-scale photoredox catalysis using hydrated electrons sustainably generated with a single green laser R Naumann, C Kerzig, M Goez Chemical Science 8 (11), 7510-7520, 2017 | 45 | 2017 |
Water-soluble tris (cyclometalated) iridium (III) complexes for aqueous electron and energy transfer photochemistry MR Schreier, X Guo, B Pfund, Y Okamoto, TR Ward, C Kerzig, OS Wenger Accounts of Chemical Research 55 (9), 1290-1300, 2022 | 40 | 2022 |
Purely organic Vis-to-UV upconversion with an excited annihilator singlet beyond 4 eV TJB Zähringer, MS Bertrams, C Kerzig Journal of Materials Chemistry C 10 (12), 4568-4573, 2022 | 34 | 2022 |
Multiphotonen‐Anregung in der Photoredoxkatalyse: Konzepte, Anwendungen und Methoden F Glaser, C Kerzig, OS Wenger Angewandte Chemie 132 (26), 10350-10370, 2020 | 30 | 2020 |