In the last decade, carbon dots (C-dots, CDs) or carbon quantum dots (CQDs) have attracted a considerable amount of attention from the scientific community as a low cost and biocompatible alternative to semiconductor quantum dots. In particular, doped C-dots have excellent fluorescent properties that have been successfully utilized for numerous applications. In this minireview, we overview the recent advances on the synthesis of doped C-dots derived from carbon-rich sources and their potential applications for biomedical and sensing applications. In addition, we will also discuss some challenges and outline some future perspectives of this exciting material
Similar to fullerenes, carbon nanotubes and graphene, carbon dots (CDs) are causing a lot of researc...
Carbon dots (CDs), a new member of carbon nanostructures, rely on surface modification and functiona...
The emerging graphene quantum dots (GQDs) and carbon dots (C-dots) have gained tremendous attention ...
In the last decade, carbon dots (C-dots, CDs) or carbon quantum dots (CQDs) have attracted a conside...
Carbon dots (C-Dots) are recognized as excellent, zero-dimensional, bio-compatible nanoparticles wit...
Carbon Dots are an emerging class of carbon-based nanoparticles, which since their discovery have at...
Carbon dots (CDs) are known as the rising star of carbon-based nanomaterials and, by virtue of their...
Carbon quantum dots (CQDs)/carbon nanodots are a new class of fluorescent carbon nanomaterials havin...
Generally, carbon nanoparticles with a size of 10 nm (or less) are called carbon quantum dots (CQDs,...
In the most recent decade, carbon dots have drawn intensive attention and triggered substantial inve...
Luminescent nanomaterials have been explored intensively to serve as biosensors and bioimaging agent...
Carbon dots (CDs) are usually smaller than 10 nm in size, and are meticulously formulated and recent...
In recent years, new carbonized nanomaterials have emerged in imaging, sensing, and various biomedic...
The emerging graphene quantum dots (GQDs) and carbon dots (C-dots) have gained tremendous attention ...
Doping fluorescent carbon dots (DFCDs) with heteroatoms have recently become of great interest compa...
Similar to fullerenes, carbon nanotubes and graphene, carbon dots (CDs) are causing a lot of researc...
Carbon dots (CDs), a new member of carbon nanostructures, rely on surface modification and functiona...
The emerging graphene quantum dots (GQDs) and carbon dots (C-dots) have gained tremendous attention ...
In the last decade, carbon dots (C-dots, CDs) or carbon quantum dots (CQDs) have attracted a conside...
Carbon dots (C-Dots) are recognized as excellent, zero-dimensional, bio-compatible nanoparticles wit...
Carbon Dots are an emerging class of carbon-based nanoparticles, which since their discovery have at...
Carbon dots (CDs) are known as the rising star of carbon-based nanomaterials and, by virtue of their...
Carbon quantum dots (CQDs)/carbon nanodots are a new class of fluorescent carbon nanomaterials havin...
Generally, carbon nanoparticles with a size of 10 nm (or less) are called carbon quantum dots (CQDs,...
In the most recent decade, carbon dots have drawn intensive attention and triggered substantial inve...
Luminescent nanomaterials have been explored intensively to serve as biosensors and bioimaging agent...
Carbon dots (CDs) are usually smaller than 10 nm in size, and are meticulously formulated and recent...
In recent years, new carbonized nanomaterials have emerged in imaging, sensing, and various biomedic...
The emerging graphene quantum dots (GQDs) and carbon dots (C-dots) have gained tremendous attention ...
Doping fluorescent carbon dots (DFCDs) with heteroatoms have recently become of great interest compa...
Similar to fullerenes, carbon nanotubes and graphene, carbon dots (CDs) are causing a lot of researc...
Carbon dots (CDs), a new member of carbon nanostructures, rely on surface modification and functiona...
The emerging graphene quantum dots (GQDs) and carbon dots (C-dots) have gained tremendous attention ...