Room‐temperature luminescent CoIII complexes (1 and 2) are presented that exhibit intense ligand‐to‐metal and ligand‐to‐ligand charge transfer absorption in the low‐energy UV …
L Schmid, C Kerzig, A Prescimone, OS Wenger - JACS Au, 2021 - ACS Publications
Ruthenium (II) polypyridine complexes are among the most popular sensitizers in photocatalysis, but they face some severe limitations concerning accessible excited-state …
The properties and reactivities of transition metal complexes are rooted in the stereoelectronic properties of their ligands. While the bulk of a ligand can be easily …
R Gupta, AK Pal - Sustainable Energy & Fuels, 2024 - pubs.rsc.org
The ever-growing problem of the energy crisis can be addressed with the development of sustainable and renewable sources of energy. The naturally occurring hydrogenases with …
Since the initial report by Lehn et al. in 1979, ruthenium tris (bipyridine)([Ru (bpy) 3] 2+) and its numerous derivatives were applied as photosensitizers (PSs) in a large panel of …
B Chowdhury, S Sinha, P Ghosh - Chemistry–A European …, 2016 - Wiley Online Library
The selective phosphate‐sensing property of a bis‐heteroleptic RuII complex, 1 [PF6] 2, which has a halogen‐bonding iodotriazole unit, is demonstrated and is shown to be superior …
R Gupta, P Sahni, S Sharma, A Roy… - Sustainable Energy & …, 2022 - pubs.rsc.org
The ever-persisting problem of energy crisis can be mitigated with renewable energy research leading to green energy sources, eg, hydrogen. This work introduces explicitly …
A novel N^ N^ N tridentate ligand dgpy (dgpy= 2, 6-diguanidylpyridine) was synthesized by a Pd-catalyzed C–N bond-forming reaction. A novel family of [RuII (tpy')(dgpy)](PF6) 2 (1 and …
E Rousset, D Chartrand, I Ciofini, V Marvaud… - Chemical …, 2015 - pubs.rsc.org
A high-temperature, microwave synthesis of [Ru (qpy) 3] 2+(qpy= 4, 4′: 2′, 2′′: 4′′, 4′′′-quaterpyridine) affords the photosensitiser in quantitative yield. The complex …