Considered at the beginning of the 21th century as being incompatible with the presence of closely bound high-energy oscillators, lanthanide-centered superexcitation, which is the raising of an already excited electron to an even higher level by excited-state energy absorption, is therefore a very active topic strictly limited to the statistical doping of low-phonon bulk solids and nanoparticles. We show here that molecular lanthanide-containing coordination complexes may be judiciously tuned to overcome these limitations and to induce near-infrared (NIR)-to-visible (VIS)-light upconversion via the successive absorption of two low-energy photons using linear-optical responses. Whereas single-ion-centered excited-state absorption mechanisms ...
The unique optical profiles exhibited by trivalent lanthanide ions and their coordination compounds ...
International audienceHere we show that nonanuclear lanthanide complexes respresent a new class of s...
The efficient conversion of low-energy, near-infrared (NIR) photons to higher energies promises adva...
Considered at the beginning of the 21th century as being incompatible with the presence of closely b...
Single-center light upconversion corresponds to the pilling up of low-energy photons via successive ...
To date, the piling up of successive photons of low energies (near infrared; NIR) using a single lan...
While the low-absorption cross section of lantha- nide-based upconversion systems, in which the triv...
The piling up of low-energy photons to produce light beams of higher energies while exploiting the n...
Since the non-linear optical (NLO) response of matter to incident excitation light does not require ...
Since the non-linear optical (NLO) response of matter to incident excitation light does not require ...
This work shows that the operation of near-infrared to visible light-upconversion in a discrete mole...
CONSPECTUS: The piling up of low-energy photons to produce light beams of higher energies while expl...
Light-upconversion via stepwise energy transfer from a sensitizer to an activator exploits linear op...
Lanthanide pairs, which can upconvert low energy photons into higher energy photons, are promising f...
Up until now restricted to solid state chemistry and nanoparticles, upconversion (UC) phenomena by w...
The unique optical profiles exhibited by trivalent lanthanide ions and their coordination compounds ...
International audienceHere we show that nonanuclear lanthanide complexes respresent a new class of s...
The efficient conversion of low-energy, near-infrared (NIR) photons to higher energies promises adva...
Considered at the beginning of the 21th century as being incompatible with the presence of closely b...
Single-center light upconversion corresponds to the pilling up of low-energy photons via successive ...
To date, the piling up of successive photons of low energies (near infrared; NIR) using a single lan...
While the low-absorption cross section of lantha- nide-based upconversion systems, in which the triv...
The piling up of low-energy photons to produce light beams of higher energies while exploiting the n...
Since the non-linear optical (NLO) response of matter to incident excitation light does not require ...
Since the non-linear optical (NLO) response of matter to incident excitation light does not require ...
This work shows that the operation of near-infrared to visible light-upconversion in a discrete mole...
CONSPECTUS: The piling up of low-energy photons to produce light beams of higher energies while expl...
Light-upconversion via stepwise energy transfer from a sensitizer to an activator exploits linear op...
Lanthanide pairs, which can upconvert low energy photons into higher energy photons, are promising f...
Up until now restricted to solid state chemistry and nanoparticles, upconversion (UC) phenomena by w...
The unique optical profiles exhibited by trivalent lanthanide ions and their coordination compounds ...
International audienceHere we show that nonanuclear lanthanide complexes respresent a new class of s...
The efficient conversion of low-energy, near-infrared (NIR) photons to higher energies promises adva...