Matches in SemOpenAlex for { <https://semopenalex.org/work/W2015773993> ?p ?o ?g. }
- W2015773993 endingPage "6260" @default.
- W2015773993 startingPage "6252" @default.
- W2015773993 abstract "The synthesis and photophysical and electrochemical properties of tris(homoleptic) complexes [Ru(tpbpy)3](PF6)2 (1) and [Os(tpbpy)3](PF6)2 (2) (tpbpy = 6'-tolyl-2,2':4',2' '-terpyridine) are reported. The ligand tpbpy is formed as the side product during the synthesis of 4'-tolyl-2,2':6',2' '-terpyridine (ttpy) and characterized by single-crystal X-ray diffraction: monoclinic, P21/c. The tridentate tpbpy coordinates as a bidentate ligand. The complexes 1 and 2 exhibit two intense absorption bands in the UV region (200-350 nm) assignable to the ligand-centered (1LC) pi-pi* transitions. The ruthenium(II) complex exhibits a broad absorption band at 470 nm while the osmium(II) complex exhibits an intense absorption band at 485 nm and a weak band at 659 nm assignable to the MLCT (dpi-pi*) transitions. A red shifting of the dpi-pi* MLCT transition is observed on going from the Ru(II) to the Os(II) complex as expected from the high-lying dpi Os orbitals. These complexes exhibit ligand-sensitized emission at 732 and 736 nm, respectively, upon light excitation onto their MLCT band through excitation of higher energy LC bands at room temperature. The MLCT transitions and the emission maxima of 1 and 2 are substantially red-shifted compared to that of [Ru(bpy)3](PF6)2 and [Os(bpy)3](PF6)2. The emission of both the complexes in the presence of acid is completely quenched indicating that the emission is not due to the protonation of the coordinated ligands. Our results indicate the occurrence of intramolecular energy transfer from the ligand to the metal center. Both the complexes undergo quasi-reversible metal-centered oxidation, and the E1/2 values for the M(II)/M(III) redox couples (0.94 and 0.50 V versus Ag/Ag+ for 1 and 2, respectively) are cathodically shifted with respect to that of [Ru(bpy)3](PF6)2 and [Os(bpy)3](PF6)2 (E1/2 = 1.28 and 1.09 V versus Ag/Ag+, respectively). The tris(homoleptic) Ru(II) and Os(II) complexes 1 and 2 could be used to construct polynuclear complexes by using the modular synthetic approach in coordination compounds by exploiting the coordinating ability of the pyridine substituent. Furthermore, these complexes offer the possibility of studying the influence of electron-withdrawing and electron-donating substituents on the photophysical properties of Ru(II) and Os(II) polypyridine complexes." @default.
- W2015773993 created "2016-06-24" @default.
- W2015773993 creator A5024051009 @default.
- W2015773993 creator A5075150955 @default.
- W2015773993 date "2007-07-11" @default.
- W2015773993 modified "2023-09-23" @default.
- W2015773993 title "Synthesis, Luminescence, and Electrochemical Studies of Tris(homoleptic) Ruthenium(II) and Osmium(II) Complexes of 6‘-Tolyl-2,2‘:4‘,2‘ ‘-terpyridine" @default.
- W2015773993 cites W1621653201 @default.
- W2015773993 cites W1963666062 @default.
- W2015773993 cites W1966585613 @default.
- W2015773993 cites W1967903954 @default.
- W2015773993 cites W1970393749 @default.
- W2015773993 cites W1973555521 @default.
- W2015773993 cites W1983628419 @default.
- W2015773993 cites W1987679692 @default.
- W2015773993 cites W1988743444 @default.
- W2015773993 cites W1991471453 @default.
- W2015773993 cites W1993020583 @default.
- W2015773993 cites W1994798889 @default.
- W2015773993 cites W2001823292 @default.
- W2015773993 cites W2004167046 @default.
- W2015773993 cites W2009690044 @default.
- W2015773993 cites W2010446932 @default.
- W2015773993 cites W2012381360 @default.
- W2015773993 cites W2013459353 @default.
- W2015773993 cites W2013512658 @default.
- W2015773993 cites W2014359814 @default.
- W2015773993 cites W2015700500 @default.
- W2015773993 cites W2020720242 @default.
- W2015773993 cites W2020933326 @default.
- W2015773993 cites W2023465630 @default.
- W2015773993 cites W2025331197 @default.
- W2015773993 cites W2027445284 @default.
- W2015773993 cites W2028479590 @default.
- W2015773993 cites W2033303094 @default.
- W2015773993 cites W2033526950 @default.
- W2015773993 cites W2034233659 @default.
- W2015773993 cites W2036435119 @default.
- W2015773993 cites W2039318684 @default.
- W2015773993 cites W2042062103 @default.
- W2015773993 cites W2044059101 @default.
- W2015773993 cites W2048093472 @default.
- W2015773993 cites W2049745418 @default.
- W2015773993 cites W2051502181 @default.
- W2015773993 cites W2052752040 @default.
- W2015773993 cites W2052781532 @default.
- W2015773993 cites W2054050423 @default.
- W2015773993 cites W2055069556 @default.
- W2015773993 cites W2065497508 @default.
- W2015773993 cites W2067792578 @default.
- W2015773993 cites W2073059231 @default.
- W2015773993 cites W2076223637 @default.
- W2015773993 cites W2078141919 @default.
- W2015773993 cites W2078664120 @default.
- W2015773993 cites W2079507386 @default.
- W2015773993 cites W2082510353 @default.
- W2015773993 cites W2087152379 @default.
- W2015773993 cites W2088810112 @default.
- W2015773993 cites W2093077889 @default.
- W2015773993 cites W2108994142 @default.
- W2015773993 cites W2114309028 @default.
- W2015773993 cites W2116177049 @default.
- W2015773993 cites W2122220082 @default.
- W2015773993 cites W2140083203 @default.
- W2015773993 cites W2144206653 @default.
- W2015773993 cites W2151003442 @default.
- W2015773993 cites W2156328797 @default.
- W2015773993 cites W2158798630 @default.
- W2015773993 cites W2161621480 @default.
- W2015773993 cites W2163278787 @default.
- W2015773993 cites W2163354708 @default.
- W2015773993 cites W2327525363 @default.
- W2015773993 cites W29179573 @default.
- W2015773993 cites W2949139591 @default.
- W2015773993 cites W3022457912 @default.
- W2015773993 cites W74691089 @default.
- W2015773993 cites W9810961 @default.
- W2015773993 doi "https://doi.org/10.1021/ic0700093" @default.
- W2015773993 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/17625831" @default.
- W2015773993 hasPublicationYear "2007" @default.
- W2015773993 type Work @default.
- W2015773993 sameAs 2015773993 @default.
- W2015773993 citedByCount "14" @default.
- W2015773993 countsByYear W20157739932012 @default.
- W2015773993 countsByYear W20157739932014 @default.
- W2015773993 countsByYear W20157739932015 @default.
- W2015773993 countsByYear W20157739932016 @default.
- W2015773993 countsByYear W20157739932017 @default.
- W2015773993 countsByYear W20157739932019 @default.
- W2015773993 countsByYear W20157739932021 @default.
- W2015773993 countsByYear W20157739932022 @default.
- W2015773993 countsByYear W20157739932023 @default.
- W2015773993 crossrefType "journal-article" @default.
- W2015773993 hasAuthorship W2015773993A5024051009 @default.
- W2015773993 hasAuthorship W2015773993A5075150955 @default.
- W2015773993 hasConcept C116569031 @default.
- W2015773993 hasConcept C121332964 @default.
- W2015773993 hasConcept C145148216 @default.