The combination of two two-photon-induced processes in a Förster resonance energy transfer (FRET)-operated photochromic fluorene-dithienylethene dyad lays the foundation for the observation of a quartic dependence of the fluorescence signal on the excitation light intensity. While this photophysical behavior is predicted for a four-photon absorbing dye, the herein proposed approach opens the way to use two-photon absorbing dyes, reaching the same performance. Hence, the spatial resolution limit, being a critical parameter for applications in fluorescence imaging or data storage with common two-photon absorbing dyes, is dramatically improved
A method has been developed for the quantitative determination of fluorescence resonance energy tran...
The synthesis, linear photophysical, and photochemical parameters, two-photon absorption (2PA), and ...
A comprehensive study of photophysical and photochemical properties of an unsymmetrical fluorene der...
The combination of two two-photon-induced processes in a Förster resonance energy transfer (FRET)-o...
Resonance energy transfer from two-photon absorbing fluorene derivatives to the photochromic compoun...
Resonance energy transfer from two-photon absorbing fluorene derivatives to the photochromic compoun...
The synthesis, structural, and photophysical characterization of a series of new fluorescent donor a...
The synthesis, structural, and photophysical characterization of a series of new fluorescent donor-a...
Three-dimensional (3D) optical data storage based on two-photon processes provides highly confined e...
A two-photon 3D optical storage system based on a photochromic diarylethene (1,2-bis(2-methylbenzo[b...
We present a novel technique for the measurement of two-photon absorption spectra. A line-shaped exc...
Linear photophysical and two-photon absorption (2PA) properties of new sulfur-containing fluorene co...
Two-photon fluorescence microscopy has become increasingly popular in biomedical research as it allo...
The linear photophysical, excited state absorption (ESA), superfluorescence, and two-photon absorpti...
Linear and nonlinear optical properties of a new organic dye, trans-4-[ p-(N-n-butyl-N-n-butylamino)...
A method has been developed for the quantitative determination of fluorescence resonance energy tran...
The synthesis, linear photophysical, and photochemical parameters, two-photon absorption (2PA), and ...
A comprehensive study of photophysical and photochemical properties of an unsymmetrical fluorene der...
The combination of two two-photon-induced processes in a Förster resonance energy transfer (FRET)-o...
Resonance energy transfer from two-photon absorbing fluorene derivatives to the photochromic compoun...
Resonance energy transfer from two-photon absorbing fluorene derivatives to the photochromic compoun...
The synthesis, structural, and photophysical characterization of a series of new fluorescent donor a...
The synthesis, structural, and photophysical characterization of a series of new fluorescent donor-a...
Three-dimensional (3D) optical data storage based on two-photon processes provides highly confined e...
A two-photon 3D optical storage system based on a photochromic diarylethene (1,2-bis(2-methylbenzo[b...
We present a novel technique for the measurement of two-photon absorption spectra. A line-shaped exc...
Linear photophysical and two-photon absorption (2PA) properties of new sulfur-containing fluorene co...
Two-photon fluorescence microscopy has become increasingly popular in biomedical research as it allo...
The linear photophysical, excited state absorption (ESA), superfluorescence, and two-photon absorpti...
Linear and nonlinear optical properties of a new organic dye, trans-4-[ p-(N-n-butyl-N-n-butylamino)...
A method has been developed for the quantitative determination of fluorescence resonance energy tran...
The synthesis, linear photophysical, and photochemical parameters, two-photon absorption (2PA), and ...
A comprehensive study of photophysical and photochemical properties of an unsymmetrical fluorene der...