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Self-Supporting Ion Gels for Electrochemiluminescent Sticker-Type Optoelectronic DevicesSmall-molecule light-emitting electrochemical cells: evidence for in situ electrochemical doping and functional operation.Synthesis, Properties, and Light-Emitting Electrochemical Cell (LEEC) Device Fabrication of Cationic Ir(III) Complexes Bearing Electron-Withdrawing Groups on the Cyclometallating Ligands.Recent Progress in Ionic Iridium(III) Complexes for Organic Electronic Devices.Luminescent Iridium Complexes Used in Light-Emitting Electrochemical Cells (LEECs).Light-Emitting Electrochemical Cells: A Review on Recent Progress.A comparative study of Ir(III) complexes with pyrazino[2,3-f][1,10]phenanthroline and pyrazino[2,3-f][4,7]phenanthroline ligands in light-emitting electrochemical cells (LECs).Tuning the photophysical properties of cationic iridium(III) complexes containing cyclometallated 1-(2,4-difluorophenyl)-1H-pyrazole through functionalized 2,2'-bipyridine ligands: blue but not blue enough.Efficient green-light-emitting electrochemical cells based on ionic iridium complexes with sulfone-containing cyclometalating ligands.Exceptionally long-lived light-emitting electrochemical cells: multiple intra-cation π-stacking interactions in [Ir(C^N)2(N^N)][PF6] emitters.[Ir(C^N)2(N^N)]+ emitters containing a naphthalene unit within a linker between the two cyclometallating ligands.A ruthenium tetrazole complex-based high efficiency near infrared light electrochemical cell.Photofunctional host-guest hybrid materials and thin films of lanthanide complexes covalently linked to functionalized zeolite A.Red emitting [Ir(C^N)2(N^N)]+ complexes employing bidentate 2,2':6',2''-terpyridine ligands for light-emitting electrochemical cells.Effect of free rotation in polypyridinic ligands of Ru(II) complexes applied in light-emitting electrochemical cells.Anion-specific aggregation induced phosphorescence emission (AIPE) in an ionic iridium complex in aqueous media.Dynamic doping and degradation in sandwich-type light-emitting electrochemical cells.The compromises of printing organic electronics: a case study of gravure-printed light-emitting electrochemical cells.Improving the carrier balance of light-emitting electrochemical cells based on ionic transition metal complexes.The Weak Microcavity as an Enabler for Bright and Fault-tolerant Light-emitting Electrochemical Cells.Deep-blue thermally activated delayed fluorescence (TADF) emitters for light-emitting electrochemical cells (LEECs)Fluorine-free blue-green emitters for light-emitting electrochemical cellsLow Current Density Driving Leads to Efficient, Bright and Stable Green ElectroluminescenceEfficient orange light-emitting electrochemical cells
P2860
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P2860
description
im Januar 2012 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в січні 2012
@uk
name
Simple, Fast, Bright, and Stable Light Sources
@en
Simple, Fast, Bright, and Stable Light Sources
@nl
type
label
Simple, Fast, Bright, and Stable Light Sources
@en
Simple, Fast, Bright, and Stable Light Sources
@nl
prefLabel
Simple, Fast, Bright, and Stable Light Sources
@en
Simple, Fast, Bright, and Stable Light Sources
@nl
P2093
P2860
P50
P356
P1433
P1476
Simple, Fast, Bright, and Stable Light Sources
@en
P2093
Henk J. Bolink
Martijn Lenes
Sebastian Meier
Wiebke Sarfert
P2860
P304
P356
10.1002/ADMA.201104047
P407
P577
2012-01-03T00:00:00Z