Search results
May 27, 2025
Gaweł, Przemysław, 2025, "Singlet Fission in a New Series of Systematically Designed Through-space Coupled Tetracene Oligomers", https://doi.org/10.18150/QO2DI8, RepOD, V1 |
May 7, 2025
Deepshikha Priyadarshini; Ronedy Naorem; Marek P. Szymański; Michał J. Chmielewski; Agnieszka Szumna, 2025, "Tuneable anion recognition at the lower rim of resorcin[4]arenes: strength, selectivity, and transport", https://doi.org/10.18150/0BWTLG, RepOD, V3 |
Apr 10, 2025
Llamosí, Arturo; Olejnik, Marcin A.; Danylyuk, Oksana; Rode, Michał; Szumna, Agnieszka, 2025, "Raw data for project: Competition Between Photoswitching and Fluorescence in Hemiindigos and Hemithioindigos", https://doi.org/10.18150/UBGP6T, RepOD, V1 |
Mar 28, 2025
Abdurakhmanova, Esma, 2025, "Supramolecular umpolung: Converting electron-rich resorcin[4]arenes into potent CH-bonding anion receptors and transporters", https://doi.org/10.18150/4YJQON, RepOD, V1 |
Mar 19, 2025
Jurek, Paulina; Szymański, Marek P; Szumna, Agnieszka, 2025, "Remote control of anion binding by CH-based receptors", https://doi.org/10.18150/RNJXPZ, RepOD, V1 |
Mar 7, 2025
Żądło-Dobrowolska, Anna, 2025, "Raw data for "Computational synthesis design for controlled degradation and revalorization"", https://doi.org/10.18150/XX3IRQ, RepOD, V1 |
Feb 10, 2025
Ostaszewski, Ryszard, 2025, "Synthesis, Antimicrobial Activity, and Tyrosinase Inhibition by Multifunctional 3,4-Dihydroxy-Phenyl Peptidomimetics", https://doi.org/10.18150/Y9VREH, RepOD, V1 |
Nov 22, 2024
Llamosí, Arturo; Danylyuk, Oksana; Szumna, Agnieszka, 2024, "Facile and Versatile Mechanochemical Synthesis of Indigoid Photoswitches", https://doi.org/10.18150/RM0X9S, RepOD, V1 |
Aug 28, 2023
Gryko, Dorota; Dworakowski, Krzysztof; Chołuj, Artur; Chmielewski, Michał, 2023, "Vitamin B12 and a metal-organic framework enable the photocatalytic generation of alkyl radicals", https://doi.org/10.18150/ZX67P5, RepOD, V1 |
Jul 12, 2023
Gryko, Dorota; Potrząsaj, Aleksandra; Ociepa, Michał; Chaładaj, Wojciech, 2023, "Bioinspired Cobalt-Catalysis Enables Generation of Nucleophilic Radicals from Oxetanes", https://doi.org/10.18150/Z8XYQC, RepOD, V1 |
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