We report a novel approach based on non-covalent interactions for the functionalization of carbon nano-onions (CNOs) with fluorophores. The assembly of pyrene-BODIPY conjugates on the CNO surface by means of pi-pi-stacking results in fluorescent carbon nanoparticles that are successfully uptaken by HeLa cancer cells with no cytotoxicity observed. The ability to functionalize carbon-based nanomaterials by using mild conditions will pave the way for future clinical application of these versatile nanomaterials
Carbon nano-onions (CNOs) possess favorable properties that make them suitable for biomedical applic...
Over the past decade, carbon nanostructures (CNSs) have been widely used in a variety of biomedical ...
Carbon nanoparticles become photoluminescent upon surface passivation with oligomeric polymer chains...
Carbon-based nanomaterials have attracted much interest during the last decade for biomedical applic...
Carbon-based nanomaterials functionalized with fluorescent and water-soluble groups have emerged as ...
The preparation of novel NIR fluorescent carbon based nanomaterials, consisting of boron difluoride ...
Carbon nano-onions (CNOs) are concentric multi-layered fullerenes. Their shape, size and layer count...
Multishell fullerenes, known as carbon nano-onions (CNOs), are an interesting class of carbon-based ...
Nanotechnology provides exciting opportunities for the development of novel, clinically relevant dia...
We report the functionalization of onion-like carbon (OLC) nanoparticles with anthracene by direct c...
Photodynamic therapy is currently one of the most promising approaches for targeted cancer treatment...
Boron/nitrogen co-doped carbon nano-onions (BN-CNOs) are spherical nanoparticles that consist of mul...
In the past few years since our viewpoint on carbon nanoparticles was first published in 2013 (Kumar...
The thesis entitled, “Functional Carbon Nanomaterial for Chemosensing and Therapeutic Application” i...
MasterCarbon nanomaterials have been widely investigated for various biomedical applications. For ex...
Carbon nano-onions (CNOs) possess favorable properties that make them suitable for biomedical applic...
Over the past decade, carbon nanostructures (CNSs) have been widely used in a variety of biomedical ...
Carbon nanoparticles become photoluminescent upon surface passivation with oligomeric polymer chains...
Carbon-based nanomaterials have attracted much interest during the last decade for biomedical applic...
Carbon-based nanomaterials functionalized with fluorescent and water-soluble groups have emerged as ...
The preparation of novel NIR fluorescent carbon based nanomaterials, consisting of boron difluoride ...
Carbon nano-onions (CNOs) are concentric multi-layered fullerenes. Their shape, size and layer count...
Multishell fullerenes, known as carbon nano-onions (CNOs), are an interesting class of carbon-based ...
Nanotechnology provides exciting opportunities for the development of novel, clinically relevant dia...
We report the functionalization of onion-like carbon (OLC) nanoparticles with anthracene by direct c...
Photodynamic therapy is currently one of the most promising approaches for targeted cancer treatment...
Boron/nitrogen co-doped carbon nano-onions (BN-CNOs) are spherical nanoparticles that consist of mul...
In the past few years since our viewpoint on carbon nanoparticles was first published in 2013 (Kumar...
The thesis entitled, “Functional Carbon Nanomaterial for Chemosensing and Therapeutic Application” i...
MasterCarbon nanomaterials have been widely investigated for various biomedical applications. For ex...
Carbon nano-onions (CNOs) possess favorable properties that make them suitable for biomedical applic...
Over the past decade, carbon nanostructures (CNSs) have been widely used in a variety of biomedical ...
Carbon nanoparticles become photoluminescent upon surface passivation with oligomeric polymer chains...