Uahengo, VeikkoCai, PingNaimhwaka, JohannesRahman, AteeqDaniel, Likius S.Bhakhoa, HanushaRhyman, LydiaRamasani, Ponnadurai2022-02-162022-02-162019Uahengo, V., et al. (2019). Photophysical, electrochemical, and DFT studies of the novel azacrownbridged dinuclear ruthenium dye sensitizers for solar cells. Polyhedron, 173, 1-7.http://hdl.handle.net/11070/3122A dinuclear ruthenium bipyridyl complex with 1,10-diaza-18-crown-6 bridging ligand was synthesized and characterized. Its photophysical and electrochemical properties were also studied. DFT computations were performed to complement the experimental investigations. Analysis of the results indicates that the path in which charges move from one metal center to the other is significant for effective electronic coupling. However, electron transfer between the two ruthenium centers is hindered by the azacrown bridging ligand, compared to the smooth electronic transfer reported for a related dye involving an azo bridging ligand.enBridging ligandsCharge transferDinuclear ruthenium complexElectronic couplingPhotophysical, electrochemical, and DFT studies of the novel azacrownbridged dinuclear ruthenium dye sensitizers for solar cellsArticle