We describe the use of a layer-by-layer hierarchical nanostructure to exploit the synergy of different lanthanide ions for converting single wavelength excitation into emissions spanning the whole spectral region. By lining up a set of lanthanide ions with matched energy levels in a core-shell nanostructure, we demonstrate well-defined cascades of energy transfer that gives access to optical emissions from a large collection of lanthanide ions (Tb3+, Eu3+, Dy3+, Sm3+, Nd3+, Yb3+, and Er3+) after excitation into a common sensitizer of Ce3+ featuring a broad absorption. Through optimization of the nanoparticle structure and surface coating, high quantum yields of up to 90% are achieved. Our results highlight that the controlled energy cascade...
In lanthanide-doped materials, energy transfer (ET) between codopant ions can populate or depopulate...
Optical encoding together with color multiplexing benefits on-site detection, and enriching the comp...
Lanthanide pairs, which can upconvert low energy photons into higher energy photons, are promising f...
We describe the use of a layer-by-layer hierarchical nanostructure to exploit the synergy of differe...
Exploration of upconversion luminescence from lanthanide emitters through energy migration has profo...
Near-infrared luminescent lanthanide (Ln)-doped nanomaterials are currently attracting high interest...
Lanthanide-doped upconversion nanoparticles have been the focus of a growing body of investigation b...
The multistep sequential dye -> Nd3+ -> Yb3+ energy transfer leading to significantly enhanced emiss...
Lanthanide-doped upconversion nanoparticles have been the focus of a growing body of investigation b...
Nanoparticles doped with lanthanide ions exhibit stable and visible luminescence under near-infrared...
The multistep sequential dye → Nd3+ → Yb3+ energy transfer leading to significantly enhanced emissio...
The multistep sequential dye → Nd3+ → Yb3+ energy transfer leading to significantly enhanced emissio...
Funder: Innovation programme under the Marie Skłodowska-Curie grant agreement No 797619Funder: China...
Lanthanide-doped upconversion nanoparticles hold promises for bioimaging, solar cells, and volumetri...
Theoretical thesis.Bibliography: pages 55-60.1. Introduction -- 2. Instrumentation, experimental met...
In lanthanide-doped materials, energy transfer (ET) between codopant ions can populate or depopulate...
Optical encoding together with color multiplexing benefits on-site detection, and enriching the comp...
Lanthanide pairs, which can upconvert low energy photons into higher energy photons, are promising f...
We describe the use of a layer-by-layer hierarchical nanostructure to exploit the synergy of differe...
Exploration of upconversion luminescence from lanthanide emitters through energy migration has profo...
Near-infrared luminescent lanthanide (Ln)-doped nanomaterials are currently attracting high interest...
Lanthanide-doped upconversion nanoparticles have been the focus of a growing body of investigation b...
The multistep sequential dye -> Nd3+ -> Yb3+ energy transfer leading to significantly enhanced emiss...
Lanthanide-doped upconversion nanoparticles have been the focus of a growing body of investigation b...
Nanoparticles doped with lanthanide ions exhibit stable and visible luminescence under near-infrared...
The multistep sequential dye → Nd3+ → Yb3+ energy transfer leading to significantly enhanced emissio...
The multistep sequential dye → Nd3+ → Yb3+ energy transfer leading to significantly enhanced emissio...
Funder: Innovation programme under the Marie Skłodowska-Curie grant agreement No 797619Funder: China...
Lanthanide-doped upconversion nanoparticles hold promises for bioimaging, solar cells, and volumetri...
Theoretical thesis.Bibliography: pages 55-60.1. Introduction -- 2. Instrumentation, experimental met...
In lanthanide-doped materials, energy transfer (ET) between codopant ions can populate or depopulate...
Optical encoding together with color multiplexing benefits on-site detection, and enriching the comp...
Lanthanide pairs, which can upconvert low energy photons into higher energy photons, are promising f...