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dc.contributor.advisorUmapathy, Siva
dc.contributor.authorSudeeksha, H C
dc.date.accessioned2021-06-08T06:27:58Z
dc.date.available2021-06-08T06:27:58Z
dc.date.submitted2020
dc.identifier.urihttps://etd.iisc.ac.in/handle/2005/5156
dc.description.abstractThe nature of the lowest excited state in rhenium(I) complex with 1,10-phenathroline as ligand was first reported by Mark Wrighton and David. L. Morse. Since then many rhenium(I) complexes with different ligands having α-diimine (N,N) functionality have been extensively studied. The present work deals with understanding of the structural variations and solvent effect on the excited state properties and dynamics in few rhenium(I) tricarbonyl α-diimine (fac-[Re(N,N)(CO)3L]0/+) complexes. The fac-[Re(N,N)(CO)3L]0/+ complexes possess different excited states like metal-to-ligand charge transfer (MLCT), metal-ligand-to-ligand charge transfer (MLLCT), ligand-to-ligand charge transfer (LLCT) or intraligand (IL) states which are energetically close to each other. These states can be tuned by structural variations in the ligands or polarity of the surrounding solvent medium. The complexes reported in this thesis were studied in detail by resonance Raman (RR), TCSPC, time-resolved absorption (TRA) and time-resolved infrared spectroscopy (TRIR), and computational methods. In one of the chapters, the differences in the excited state properties of fac-[Re(bpy)(CO)3(3ampy)](PF)6 (Re3ampy) and fac-[Re(bpy)(CO)3(4ampy)](PF)6 (Re4ampy) complexes as a function of subtle structural variation of the axial ligand and solvent polarity has been studied. It was hypothesized that, by using the isomers of aminopyridine as axial ligand, the excited state decay mechanism in Re3ampy and Re4ampy were altered. In the next chapter, the influence of hydrogen bonding on fac-[Re(phendione)(CO)3Br] (RepdBr) complex was studied. The RR spectroscopic results showed differences in the excited state structures in ACN and MeOH solvents, upon photoexcitation. The lowest triplet states were found to possess 3MLCT and IL 3ππ* character in ACN and MeOH, respectively. Finally, the excited state dynamics of two rhenium(I) Schiff base complexes – fac-[Re(pyan)(CO)3Br] (Repyan) and fac-[Re(pydian)(CO)3Br] (Repydian) – were explored. It was observed from RR spectroscopy that an MLCT(pyridine) state was formed upon photoexcitation in both the complexes. The TRIR results revealed that the decay mechanisms of the complexes were different due to the hindrance to rotation of ligand in the excited state of Repydian in comparison to Repyan complex. Overall, a comprehensive study of different Rhenium(I) tricarbonyl α-diimine complexes was carried out using a host of different spectroscopic techniques and it was found that structural variations in the ancillary and α-diimine ligands, and the solvent environment affects the excited state dynamics of these complexes.en_US
dc.language.isoen_USen_US
dc.relation.ispartofseries;IISc-2020-0271.R1
dc.rightsI grant Indian Institute of Science the right to archive and to make available my thesis or dissertation in whole or in part in all forms of media, now hereafter known. I retain all proprietary rights, such as patent rights. I also retain the right to use in future works (such as articles or books) all or part of this thesis or dissertationen_US
dc.subjectTime-resolved spectroscopyen_US
dc.subjectResonance Raman spectroscopyen_US
dc.subjectInorganic photochemistryen_US
dc.subjectrheniumen_US
dc.subject.classificationResearch Subject Categories::NATURAL SCIENCES::Chemistry::Physical chemistryen_US
dc.titleStructural and Solvent Effects on Excited State Dynamics of Rhenium(I) Tricarbonyl α-Diimine Complexes: A Time-Resolved Spectroscopic and Computational Studyen_US
dc.typeThesisen_US
dc.degree.namePhDen_US
dc.degree.levelDoctoralen_US
dc.degree.grantorIndian Institute of Scienceen_US
dc.degree.disciplineFaculty of Scienceen_US


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