Lissamine functionalized terphenyl-based Nd complexes are synthesized, and incorporated in deuterated dimethylsulfoxide solutions and partially fluorinated planar polymer waveguides. Optical excitation of the lissamine sensitizer around 500 nm, followed by intramolecular energy transfer to the Nd3+ ion, causes near-infrared photoluminescence (890, 1060, 1340 nm) due to intra-4f transitions in the Nd3+ ion. The intramolecular energy transfer rate is larger than 107 s−1. Due to the large absorption cross-section of the sensitizer (>10−17 cm2 around 500 nm), the Nd3+ is excited 104 times more efficiently than in a pure complex, without sensitizer. The Nd3+ luminescence lifetime is relatively short, both in solution (2.2 μs) and in a polymer ho...
Intense organic neodymium (Nd3+) emission is obtained with near-infrared (NIR) emission equivalent i...
The emission spectrum of the Nd(TTA)3Phen-doped 6-FDA/Epoxy waveguide was measured at different pump...
Rare-earth-ion-doped polymer waveguide amplifiers [1-2] have been studied due to their potential use...
Lissamine functionalized terphenyl-based Nd complexes are synthesized, and incorporated in deuterate...
Lissamine functionalized terphenyl-based Nd complexes are synthesized, and incorporated in deuterate...
We report 890 nm luminescence from a neodymium-doped polymer light-emitting diode. The active layer ...
Polymer-based optical waveguide amplifiers offer a low-cost alternative for inorganic waveguide ampl...
general, sensitization of lanthanide(III) ions by organic sensitizers is regarded to take place via ...
The luminescence of lanthanide(III) ions emitting in the near-infrared region is ideally suited for ...
International audienceWe report on the near infrared electroluminescence properties of a Nd3+ comple...
Polymer-based, 6-FDA/epoxy channel waveguides doped with a Nd complex, $Nd(TTA)_3phen$, are fabricat...
Channel waveguides based on a polymer, 6-fluorinated-dianhydride/epoxy, which is actively doped with...
Lanthanide complexes, Eu(dbM)(3)(Phen), [Et4N][Eu(nta)(4)] and Er(dbM)(3)(Phen), are employed as lum...
We have designed and developed novel luminescent lanthanide complexes for advanced photonics applica...
The emission spectrum of the $Nd{(TTA)}_3Phen$-doped 6-FDA/Epoxy waveguide was measured at different...
Intense organic neodymium (Nd3+) emission is obtained with near-infrared (NIR) emission equivalent i...
The emission spectrum of the Nd(TTA)3Phen-doped 6-FDA/Epoxy waveguide was measured at different pump...
Rare-earth-ion-doped polymer waveguide amplifiers [1-2] have been studied due to their potential use...
Lissamine functionalized terphenyl-based Nd complexes are synthesized, and incorporated in deuterate...
Lissamine functionalized terphenyl-based Nd complexes are synthesized, and incorporated in deuterate...
We report 890 nm luminescence from a neodymium-doped polymer light-emitting diode. The active layer ...
Polymer-based optical waveguide amplifiers offer a low-cost alternative for inorganic waveguide ampl...
general, sensitization of lanthanide(III) ions by organic sensitizers is regarded to take place via ...
The luminescence of lanthanide(III) ions emitting in the near-infrared region is ideally suited for ...
International audienceWe report on the near infrared electroluminescence properties of a Nd3+ comple...
Polymer-based, 6-FDA/epoxy channel waveguides doped with a Nd complex, $Nd(TTA)_3phen$, are fabricat...
Channel waveguides based on a polymer, 6-fluorinated-dianhydride/epoxy, which is actively doped with...
Lanthanide complexes, Eu(dbM)(3)(Phen), [Et4N][Eu(nta)(4)] and Er(dbM)(3)(Phen), are employed as lum...
We have designed and developed novel luminescent lanthanide complexes for advanced photonics applica...
The emission spectrum of the $Nd{(TTA)}_3Phen$-doped 6-FDA/Epoxy waveguide was measured at different...
Intense organic neodymium (Nd3+) emission is obtained with near-infrared (NIR) emission equivalent i...
The emission spectrum of the Nd(TTA)3Phen-doped 6-FDA/Epoxy waveguide was measured at different pump...
Rare-earth-ion-doped polymer waveguide amplifiers [1-2] have been studied due to their potential use...