Lanthanide pairs, which can upconvert low energy photons into higher energy photons, are promising for efficient upconversion emission. A typical system with Yb3+ as a sensitizer can convert short NIR into visible/ultraviolet light via energy transfer between lanthanide ions. Such upconverting nanocrystals doped with lanthanide ions have found significant potential in bioimaging, photochemical reactions and energy conversion. This review presents a fundamental understanding of energy transfer in lanthanidesupported photon upconversion. We introduce the emerging progress in excitation selection based on the energy transfer within lanthanide ions or activation from antennae, with an outlook in the development and applications of the lanthanid...
Lanthanide (Ln3+) doped upconversion nanoparticles (UCNPs) have displayed attractive potentiality in...
Upconversion (UC) is a process that describes the emission of shorter-wavelength light compared to t...
Efficient photon upconversion at low light intensities promises major advances in technologies spann...
Exploration of upconversion luminescence from lanthanide emitters through energy migration has profo...
Photon upconversion in lanthanide-doped nanoparticles enables important technological developments. ...
The efficient conversion of low-energy, near-infrared (NIR) photons to higher energies promises adva...
The efficient conversion of low-energy, near-infrared (NIR) photons to higher energies promises adva...
Upconversion photoluminescence is a nonlinear effect where multiple lower energy excitation photons ...
Upconversion nanocrystals that converted near-infrared radiation into emission in the ultraviolet sp...
Upconversion nanocrystals that converted near-infrared radiation into emission in the ultraviolet sp...
Funder: Innovation programme under the Marie Skłodowska-Curie grant agreement No 797619Funder: China...
The applications of lanthanide-doped upconversionnanocrystals in biological imaging, photonics, phot...
Rare earth nanomaterials, which feature long-lived intermediate energy levels and intraconfiguration...
Lanthanide‐doped photon upconversion nanoparticles (UCNPs) are capable of converting low‐intensity n...
Lanthanide-based upconversion is a well-known process in solids, but for a wide variety of applicati...
Lanthanide (Ln3+) doped upconversion nanoparticles (UCNPs) have displayed attractive potentiality in...
Upconversion (UC) is a process that describes the emission of shorter-wavelength light compared to t...
Efficient photon upconversion at low light intensities promises major advances in technologies spann...
Exploration of upconversion luminescence from lanthanide emitters through energy migration has profo...
Photon upconversion in lanthanide-doped nanoparticles enables important technological developments. ...
The efficient conversion of low-energy, near-infrared (NIR) photons to higher energies promises adva...
The efficient conversion of low-energy, near-infrared (NIR) photons to higher energies promises adva...
Upconversion photoluminescence is a nonlinear effect where multiple lower energy excitation photons ...
Upconversion nanocrystals that converted near-infrared radiation into emission in the ultraviolet sp...
Upconversion nanocrystals that converted near-infrared radiation into emission in the ultraviolet sp...
Funder: Innovation programme under the Marie Skłodowska-Curie grant agreement No 797619Funder: China...
The applications of lanthanide-doped upconversionnanocrystals in biological imaging, photonics, phot...
Rare earth nanomaterials, which feature long-lived intermediate energy levels and intraconfiguration...
Lanthanide‐doped photon upconversion nanoparticles (UCNPs) are capable of converting low‐intensity n...
Lanthanide-based upconversion is a well-known process in solids, but for a wide variety of applicati...
Lanthanide (Ln3+) doped upconversion nanoparticles (UCNPs) have displayed attractive potentiality in...
Upconversion (UC) is a process that describes the emission of shorter-wavelength light compared to t...
Efficient photon upconversion at low light intensities promises major advances in technologies spann...