Fluorescence is ubiquitous in life science and used in broad fields of research going from ecology to medicine. Among the most common fluorogenic compounds, dyes are being exploited in bioimaging for their outstanding optical properties across a broad range of wavelengths from the UV to the near-IR. However, dye molecules are often toxic to living organisms and photodegradable, giving limited time windows for in vivo monitoring. By encapsulating organic dyes inside a boron nitride nanotube (dyes@BNNT), we achieve a passivation of the dyes against photodegradation and chemical reaction. The dyes@BNNT nanohybrids contain aggregated and ordered dyes exhibiting strong photoluminescence with signal remaining stable and exempt of blinking over a ...
© 2019 American Chemical Society. Fluorescent nanoparticles with optically robust luminescence are i...
Fluorescent nanomaterials are expected to revolutionize medical diagnostic, imaging, and therapeutic...
Speed, resolution and sensitivity of today's fluorescence bioimaging can be drastically improved by ...
C. Allard, R. Nascimento F. Fossard, L. Schué, E. Flahaut, A. Loiseau, P. Desjardins, R. Martel, E. ...
Fluorescence is ubiquitous in life science and used in many fields of research ranging from ecology ...
Strong and stable visible-light-emitting boron nitride nanotube (BNNT)/biomolecule nanohybrids were ...
© 2016 SPIE. Bio-imaging requires robust ultra-bright probes without causing any toxicity to the cel...
Fluorescence is achieved by emission of electromagnetic radiation in the form of ultraviolet, visibl...
AIM: To evaluate the response of cells to boron nitride nanotubes (BNNTs) carrying fluorescent probe...
Nanoparticles are key vehicles for targeted therapies because they can pass through biological barri...
We describe the high-throughput screening of a library of 30 boronic acid derivatives to form comple...
The synthesis of a new biocompatible bichromophoric system (CURBO) was developed, by connecting the ...
The popularity of boron nitride nanomaterials for their application in areas like electronics, photo...
Boron nitride nanotubes (BNNTs) represent an innovative and extremely intriguing class of nanomateri...
Boron nitride nanotubes (BNNTs) are of intense scientific interest due to their unique physiochemica...
© 2019 American Chemical Society. Fluorescent nanoparticles with optically robust luminescence are i...
Fluorescent nanomaterials are expected to revolutionize medical diagnostic, imaging, and therapeutic...
Speed, resolution and sensitivity of today's fluorescence bioimaging can be drastically improved by ...
C. Allard, R. Nascimento F. Fossard, L. Schué, E. Flahaut, A. Loiseau, P. Desjardins, R. Martel, E. ...
Fluorescence is ubiquitous in life science and used in many fields of research ranging from ecology ...
Strong and stable visible-light-emitting boron nitride nanotube (BNNT)/biomolecule nanohybrids were ...
© 2016 SPIE. Bio-imaging requires robust ultra-bright probes without causing any toxicity to the cel...
Fluorescence is achieved by emission of electromagnetic radiation in the form of ultraviolet, visibl...
AIM: To evaluate the response of cells to boron nitride nanotubes (BNNTs) carrying fluorescent probe...
Nanoparticles are key vehicles for targeted therapies because they can pass through biological barri...
We describe the high-throughput screening of a library of 30 boronic acid derivatives to form comple...
The synthesis of a new biocompatible bichromophoric system (CURBO) was developed, by connecting the ...
The popularity of boron nitride nanomaterials for their application in areas like electronics, photo...
Boron nitride nanotubes (BNNTs) represent an innovative and extremely intriguing class of nanomateri...
Boron nitride nanotubes (BNNTs) are of intense scientific interest due to their unique physiochemica...
© 2019 American Chemical Society. Fluorescent nanoparticles with optically robust luminescence are i...
Fluorescent nanomaterials are expected to revolutionize medical diagnostic, imaging, and therapeutic...
Speed, resolution and sensitivity of today's fluorescence bioimaging can be drastically improved by ...