A conformal coating technique with nanocarbon was developed to enhance the surface properties of alumina nanoparticles for bio-applications. The ultra-thin carbon layer induces new surface properties such as water dispersion, cytocompatibility and tuneable surface chemistry, while maintaining the optical properties of the core particle. The possibility of using these particles as agents for DNA sensing was demonstrated in a competitive assay. Additionally, the inherent fluorescence of the core alumina particles provided a unique platform for localization and monitoring of living organisms, allowing simultaneous cell monitoring and intra-cellular sensing. Nanoparticles were able to carry genes to the cells and release them in an environment ...
Nanoparticles (NPs) have considerable potential in targeted medicine. NPs can merge various function...
New highly sensitive voltammetric DNA-sensors have been developed for the detection of cytostatic dr...
New developments in biofunctionalisation of nanomaterials are a driving force for innovation in bion...
A conformal coating technique with nanocarbon was developed to enhance the surface properties of alu...
A highly-stable and biocompatible nanoporous electrode is demonstrated herein. The electrode is base...
A highly-stable and biocompatible nanoporous electrode is demonstrated herein. The electrode is base...
Nanocarbons with different dimensions (e.g., 0D fullerenes and carbon nanodots, 1D carbon nanotubes ...
© The Royal Society of Chemistry. Extracellular nucleic acids freely circulating in blood and other ...
The common problem with all different forms of cancer is that many people experience the symptoms, a...
In this article, we demonstrate the facile preparation of carbon nanospheres on a large scale by tre...
Extracellular nucleic acids freely circulating in blood and other physiologic fluids are important b...
Here, we report a facile and rapid approach for the synthesis of multiband fluorescent graphitic car...
Sensory protocols for evaluation of DNA distortion due to exposure to various harmful chemicals and ...
Luminescent nanomaterials have been explored intensively to serve as biosensors and bioimaging agent...
Carbon Dots are an emerging class of carbon-based nanoparticles, which since their discovery have at...
Nanoparticles (NPs) have considerable potential in targeted medicine. NPs can merge various function...
New highly sensitive voltammetric DNA-sensors have been developed for the detection of cytostatic dr...
New developments in biofunctionalisation of nanomaterials are a driving force for innovation in bion...
A conformal coating technique with nanocarbon was developed to enhance the surface properties of alu...
A highly-stable and biocompatible nanoporous electrode is demonstrated herein. The electrode is base...
A highly-stable and biocompatible nanoporous electrode is demonstrated herein. The electrode is base...
Nanocarbons with different dimensions (e.g., 0D fullerenes and carbon nanodots, 1D carbon nanotubes ...
© The Royal Society of Chemistry. Extracellular nucleic acids freely circulating in blood and other ...
The common problem with all different forms of cancer is that many people experience the symptoms, a...
In this article, we demonstrate the facile preparation of carbon nanospheres on a large scale by tre...
Extracellular nucleic acids freely circulating in blood and other physiologic fluids are important b...
Here, we report a facile and rapid approach for the synthesis of multiband fluorescent graphitic car...
Sensory protocols for evaluation of DNA distortion due to exposure to various harmful chemicals and ...
Luminescent nanomaterials have been explored intensively to serve as biosensors and bioimaging agent...
Carbon Dots are an emerging class of carbon-based nanoparticles, which since their discovery have at...
Nanoparticles (NPs) have considerable potential in targeted medicine. NPs can merge various function...
New highly sensitive voltammetric DNA-sensors have been developed for the detection of cytostatic dr...
New developments in biofunctionalisation of nanomaterials are a driving force for innovation in bion...