The detection of chemical or biological analytes upon molecular reactions relies increasingly on fluorescence methods, and there is a demand for more sensitive, more specific, and more versatile fluorescent molecules. We have designed long wavelength fluorogenic probes with a turn-ON mechanism based on a donor–two-acceptor π-electron system that can undergo an internal charge transfer to form new fluorochromes with longer π-electron systems. Several latent donors and multiple acceptor molecules were incorporated into the probe modular structure to generate versatile dye compounds. This new library of dyes had fluorescence emission in the near-infrared (NIR) region. Computational studies reproduced the observed experimental trends well and s...
Optical imaging in the near-infrared (NIR) range enables detecting ligand-receptor interactions and ...
Harnessing the near-infrared (NIR) region of the electromagnetic spectrum is exceedingly important f...
We report the DNA photocleavage abilities of GEO30 and GEO31, near-infrared (NIR) donor-π-acceptor f...
\u3cp\u3eThe detection of chemical or biological analytes upon molecular reactions relies increasing...
The detection of chemical or biological analytes upon molecular reactions relies increasingly on flu...
The detection of chemical or biological analytes upon molecular reactions relies increasingly on flu...
Near-infrared (NIR) fluorescent sensors have emerged as promising molecular tools for imaging biomol...
Fluorescence imaging is one of the most powerful techniques for monitoring biomolecules in living sy...
Fluorophores are substances capable of absorbing one wavelength of light and reemitting a photon at ...
A selection of NIR‐optically responsive neuron probes was produced comprising of a donor julolidyl g...
Near-infrared (NIR) fluorophores attract increasing attention as a molecular marker (or probe) for i...
A selection of NIR-optically responsive neuron probes was produced comprising of a donor julolidyl g...
We present a novel design strategy for near-infrared (NIR) fluorescence probes utilizing dye–protein...
Fluorescence-based imaging techniques provide a simple, highly sensitive method of studying live cel...
Optical imaging in the near-infrared (NIR) range enables detecting ligand-receptor interactions and ...
Harnessing the near-infrared (NIR) region of the electromagnetic spectrum is exceedingly important f...
We report the DNA photocleavage abilities of GEO30 and GEO31, near-infrared (NIR) donor-π-acceptor f...
\u3cp\u3eThe detection of chemical or biological analytes upon molecular reactions relies increasing...
The detection of chemical or biological analytes upon molecular reactions relies increasingly on flu...
The detection of chemical or biological analytes upon molecular reactions relies increasingly on flu...
Near-infrared (NIR) fluorescent sensors have emerged as promising molecular tools for imaging biomol...
Fluorescence imaging is one of the most powerful techniques for monitoring biomolecules in living sy...
Fluorophores are substances capable of absorbing one wavelength of light and reemitting a photon at ...
A selection of NIR‐optically responsive neuron probes was produced comprising of a donor julolidyl g...
Near-infrared (NIR) fluorophores attract increasing attention as a molecular marker (or probe) for i...
A selection of NIR-optically responsive neuron probes was produced comprising of a donor julolidyl g...
We present a novel design strategy for near-infrared (NIR) fluorescence probes utilizing dye–protein...
Fluorescence-based imaging techniques provide a simple, highly sensitive method of studying live cel...
Optical imaging in the near-infrared (NIR) range enables detecting ligand-receptor interactions and ...
Harnessing the near-infrared (NIR) region of the electromagnetic spectrum is exceedingly important f...
We report the DNA photocleavage abilities of GEO30 and GEO31, near-infrared (NIR) donor-π-acceptor f...