Luminescent lanthanide complexes as photochemical supramolecular devices

[1]  M. Guardigli,et al.  Encapsulated lanthanide ions as efficient luminescent species , 1992 .

[2]  W. Horrocks,et al.  Europium(III) luminescence excitation spectroscopy. Inner-sphere complexation of europium(III) by chloride, thiocyanate, and nitrate ions , 1983 .

[3]  B. Judd,et al.  OPTICAL ABSORPTION INTENSITIES OF RARE-EARTH IONS , 1962 .

[4]  I Hemmilä,et al.  Fluoroimmunoassay: present status and key problems. , 1979, Clinical chemistry.

[5]  Y. Haas,et al.  Pathways of radiative and radiationless transitions in europium(III) solutions. The role of high energy vibrations , 1971 .

[6]  Lanthanide ion probes of structure in biology. Laser-induced luminescence decay constants provide a direct measure of the number of metal-coordinated water molecules , 1979 .

[7]  Vincenzo Balzani,et al.  ANTENNA EFFECT IN LUMINESCENT LANTHANIDE CRYPTATES: A PHOTOPHYSICAL STUDY , 1990 .

[8]  G. S. Ofelt Intensities of Crystal Spectra of Rare‐Earth Ions , 1962 .

[9]  R. Ungaro,et al.  p-t-Butylcalix[4]arene tetra-acetamide: a new strong receptor for alkali cations [1] , 1988 .

[10]  K. Freed Energy dependence of electronic relaxation processes in polyatomic molecules , 1976 .

[11]  V. Balzani,et al.  Encapsulation of lanthanide ions in calixarene receptors. A strongly luminescent terbium(3+) complex , 1990 .

[12]  G. Blasse The influence of charge-transfer and rydberg states on the luminescence properties of lanthanides and actinides , 1976 .

[13]  V. Balzani,et al.  Luminescence properties of Eu3+ complexes of tripode and tetrapode ligands containing 2,2'-bipyridine units , 1990 .

[14]  G. Blasse,et al.  Luminescence of the europium(III) cryptate [Eu3+⊂2.2.1] in the solid state , 1986 .

[15]  Renata Reisfeld,et al.  Radiative and non-radiative transitions of rare-earth ions in glasses , 1975 .

[16]  J. Lehn,et al.  Synthesis and Properties of Sodium and Europium(III) Cryptates Incorporating the 2,2′-Bipyridine 1,1′-Dioxide and 3,3′-Biisoquinoline 2,2′-Dioxide Units , 1991 .

[17]  W. Stręk The f–f radiationless transitions in lanthanide complexes , 1982 .

[18]  J. Lehn,et al.  Cryptates. XVI. [2]-Cryptates. Stability and selectivity of alkali and alkaline-earth macrobicyclic complexes , 1975 .

[19]  J. Lehn,et al.  Cryptates—XI: Complexes macrobicycliques, formation, structure, proprietes , 1973 .

[20]  W. Horrocks,et al.  Lanthanide ion luminescence probes of the structure of biological macromolecules , 1981 .

[21]  M. Maestri,et al.  Luminescence properties of cryptate europium (III) complexes incorporating heterocyclic N-oxide groups , 1991 .

[22]  V. Balzani,et al.  Spectroscopic and photophysical properties of the Europium (III) Cryptate [Eu3+ ⊂ 2.2.1] , 1984 .

[23]  V. Balzani,et al.  Influence of fluoride ions on the absorption and luminescence properties of the [Eu.cntnd.2.2.1]3+ and [Tb.cntnd.2.2.1]3+ cryptates , 1987 .

[24]  C. Jørgensen,et al.  Analogies and Differences Between Monatomic Entities and Condensed Matter , 1977 .

[25]  J. Lehn,et al.  [Eu ⊂ bpy·bpy·bpy]+ cryptate: Luminescence and conformation , 1988 .

[26]  E. Würzberg,et al.  Energy gap law in the solvent isotope effect on radiationless transitions of rare earth ions , 1975 .

[27]  R. Holz,et al.  Spectroscopic characterization of the europium(III) complexes of a series of N,N'-bis(carboxymethyl) macrocyclic ether bis(lactones) , 1991 .

[28]  J. Lehn,et al.  Synthesis and Metal‐Binding Properties of Polybipyridine Ligands Derived from Acyclic and Macrocyclic Polyamines , 1990 .

[29]  Jean-Marie Lehn,et al.  Photoactive cryptands. Synthesis of the sodium cryptates of macrobicyclic ligands containing bipyridine and phenoanthroline groups , 1984 .

[30]  L. Roth Schroeter's ratios for Martian craters: Radar results , 1991 .

[31]  V. Balzani,et al.  Luminescent europium(3+), terbium(3+) and gadolinium(3+) complexes of a branched-triazacyclononane ligand containing three 2,2'-bipyridine units , 1991 .

[32]  G. Blasse,et al.  The luminescence of the rare earth cryptates [Tb ⊂ 2.2.1]3+ and [Sm ⊂ 2.2.1]3+ , 1986 .

[33]  J. Lehn,et al.  Luminescence processes in (Tb contains bpy x bpy x bpy)/sup 3 +/ cryptate: a low-temperature solid-state study , 1988 .