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Engineering emissive europium and terbium complexes for molecular imaging and sensing

Dalton Transactions · 2006 · pp. 2757–2757
Shashi U. PandyaJunhua YuDavid Parker

Abstract

Emissive f-block coordination complexes constitute an important class of optical probes, with applications ranging from sensing of bioactive species, high throughput assays and screening protocols in vitro, to time-resolved imaging studies in cellulo or in vivo. The key chemistry issues to be addressed in complex design and characterisation are defined, with an emphasis on the use of emissive europium and terbium complexes and their conjugates in molecular imaging. Both luminescent 'tags' useful in energy transfer studies and 'responsive' systems for sensing are discussed.

Lanthanide and Transition Metal ComplexesMolecular Sensors and Ion DetectionMetal complexes synthesis and propertiesEuropiumTerbiumLuminescenceEnergy transferNanotechnologyChemistryCombinatorial chemistryMaterials scienceOptoelectronicsChemical physics

MeSH terms

ChemistryEuropiumFluorescent DyesLuminescent MeasurementsMicroscopy, FluorescenceModels, ChemicalTemperatureTerbiumMolecular ProbesMolecular StructureMicroscopy, ConfocalMacromolecular Substances

Funding

  • Royal Society
Citations
357
FWCI
23.91
field-weighted impact
References
103
Percentile
100%
vs. same field & year
Citations per year
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References
Luminescent chemosensors: from molecules to nanoparticles
New Journal of Chemistry · 2004 · 248 citations
Luminescent lanthanide sensors for pH, pO2 and selected anions
Coordination Chemistry Reviews · 2000 · 807 citations
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