LUMINESCENCE STUDIES OF PYRIDINE ALPHA-DIIMINE RHENIUM(I) TRICARBONYL COMPLEXES

被引:322
作者
SACKSTEDER, L
ZIPP, AP
BROWN, EA
STREICH, J
DEMAS, JN
DEGRAFF, BA
机构
[1] SUNY COLL CORTLAND,DEPT CHEM,CORTLAND,NY 13045
[2] UNIV VIRGINIA,DEPT CHEM,CHARLOTTESVILLE,VA 22903
[3] JAMES MADISON UNIV,DEPT CHEM,HARRISONBURG,VA 22807
关键词
D O I
10.1021/ic00346a033
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The room- and low-temperature luminescences of ReL(CO)3X where L = 2,2′-bipyridine, 1,10-phenanthroline, or 5-phenyl-1,10-phenanthroline and X = substituted pyridine or quinoline were studied. Relatively small but useful variations in the state energies can be effected by altering the Hammett σ values of substituents on the pyridines. All complexes exhibit metal to ligand charge-transfer (MLCT) phosphorescences at room temperature. However, by choice of suitable ligands, the emissions can be switched to ligand-localized phosphorescence on cooling to 77 K. This behavior is explained on the basis of the proximity of the lowest MLCT and π-π* triplet states and the changes in energy of the MLCT state as a function of temperature. At room temperature the MLCT state can equilibrate to an energy that is lower than that of 3π-π* state and give MLCT luminescence. In rigid low-temperature media, however, the MLCT state cannot relax during the excited-state decay and emission is from the lower energy 3π-π* state. At room temperature, lifetimes are predominantly affected by alterations in the nonradiative rate constant, as described by the energy-gap law. From σ values of the substituents, both state energies and lifetimes can be predicted before synthesis. The design of new luminescent complexes is discussed. © 1990, American Chemical Society. All rights reserved.
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页码:4335 / 4340
页数:6
相关论文
共 56 条
[1]   PHOTOSUBSTITUTION REACTIVITY OF A SERIES OF TETRACARBONYL BIS(SUBSTITUTED PYRIDINE) TUNGSTEN(0) COMPLEXES HAVING LIGAND-FIELD OR CHARGE-TRANSFER LOWEST EXCITED-STATES [J].
ABRAHAMSON, HB ;
WRIGHTON, MS .
INORGANIC CHEMISTRY, 1978, 17 (12) :3385-3388
[2]  
Balzani V., 1978, TOP CURR CHEM, P1, DOI [10.1007/BFb0048835, DOI 10.1007/BFB0048835]
[3]   CHIRAL PROBES FOR THE HANDEDNESS OF DNA HELICES - ENANTIOMERS OF TRIS(4,7-DIPHENYLPHENANTHROLINE)RUTHENIUM(II) [J].
BARTON, JK ;
BASILE, LA ;
DANISHEFSKY, A ;
ALEXANDRESCU, A .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1984, 81 (07) :1961-1965
[4]   CHIRAL DISCRIMINATION IN THE COVALENT BINDING OF BIS(PHENANTHROLINE)DICHLORORUTHENIUM(II) TO B-DNA [J].
BARTON, JK ;
LOLIS, E .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1985, 107 (03) :708-709
[5]   TRIS(PHENANTHROLINE)RUTHENIUM(II) - STEREOSELECTIVITY IN BINDING TO DNA [J].
BARTON, JK ;
DANISHEFSKY, AT ;
GOLDBERG, JM .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1984, 106 (07) :2172-2176
[6]  
Battino R., 1981, IUPAC SOLUBILITY DAT, V7
[7]   CHARGE-TRANSFER AND INTRALIGAND ELECTRONIC SPECTRA OF BIPYRIDYL COMPLEXES OF IRON, RUTHENIUM, AND OSMIUM .2. TERVALENT COMPLEXES [J].
BRYANT, GM ;
FERGUSSO.JE .
AUSTRALIAN JOURNAL OF CHEMISTRY, 1971, 24 (02) :275-&
[8]   VARIABLE TEMPERATURE CONTROLLER [J].
BUELL, SL ;
DEMAS, JN .
ANALYTICAL CHEMISTRY, 1982, 54 (07) :1214-1215
[9]   APPLICATION OF THE ENERGY-GAP LAW TO NONRADIATIVE, EXCITED-STATE DECAY [J].
CASPAR, JV ;
MEYER, TJ .
JOURNAL OF PHYSICAL CHEMISTRY, 1983, 87 (06) :952-957
[10]   SYNTHETIC ROUTES TO LUMINESCENT 2,2'-BIPYRIDYL COMPLEXES OF RHENIUM - PREPARATION AND SPECTRAL AND REDOX PROPERTIES OF MONO(BIPYRIDYL) COMPLEXES OF RHENIUM(III) AND RHENIUM(I) [J].
CASPAR, JV ;
SULLIVAN, BP ;
MEYER, TJ .
INORGANIC CHEMISTRY, 1984, 23 (14) :2104-2109