Calcium carbonate aragonite polymorph nanoparticles derived from cockle shells were prepared using surface functionalization method followed by purification steps. Size, morphology, and surface properties of the nanoparticles were characterized using transmission electron microscopy, field emission scanning electron microscopy, dynamic light scattering, zetasizer, X-ray powder diffraction, and Fourier transform infrared spectrometry techniques. The potential of surface-functionalized calcium carbonate aragonite polymorph nanoparticle as a drug-delivery agent were assessed through in vitro drug-loading test and drug-release test. Transmission electron microscopy, field emission scanning electron microscopy, and particle size distribution ana...
For the first time, we report here a novel top down catalytic approach for the synthesis of aragonit...
Calcium carbonate has slowly paved its way into the field of nanomaterial research due to its inhere...
Calcium carbonate has slowly paved its way into the field of nanomaterial research due to its inhere...
Calcium carbonate aragonite polymorph nanoparticles derived from cockle shells were prepared using s...
Drug delivery is a current biomedical application employing nano-sized particles. In line with cur...
The development of cockle shell-based calcium carbonate aragonite polymorph nanoparticle synthesis m...
A simple and low-cost method for the synthesis of calcium carbonate nanoparticles from cockle shells...
This study revealed the development of paste from cockle shell-based calcium carbonate nanoparticles...
We report a simple, novel and low-cost method for the synthesis of aragonite nanoparticles from cock...
The synthesis of pure calcium carbonate nanocrystals using a high pressure homogeniser (HPH) via a m...
Calcium carbonate is a porous inorganic nanomaterial with huge potential in biomedical applications ...
Cockle shell-derived aragonite calcium carbonate nanoparticles (CACNP) have demonstrated prospect as...
The use of safe and efficient delivery systems, capable of delivering therapeutic agents to subcellu...
Abstract The evolution of nanomaterial in science has brought about a growing increase in nanotechno...
Background: Cockleshell-derived aragonite calcium carbonate nanoparticles were prepared by the top-d...
For the first time, we report here a novel top down catalytic approach for the synthesis of aragonit...
Calcium carbonate has slowly paved its way into the field of nanomaterial research due to its inhere...
Calcium carbonate has slowly paved its way into the field of nanomaterial research due to its inhere...
Calcium carbonate aragonite polymorph nanoparticles derived from cockle shells were prepared using s...
Drug delivery is a current biomedical application employing nano-sized particles. In line with cur...
The development of cockle shell-based calcium carbonate aragonite polymorph nanoparticle synthesis m...
A simple and low-cost method for the synthesis of calcium carbonate nanoparticles from cockle shells...
This study revealed the development of paste from cockle shell-based calcium carbonate nanoparticles...
We report a simple, novel and low-cost method for the synthesis of aragonite nanoparticles from cock...
The synthesis of pure calcium carbonate nanocrystals using a high pressure homogeniser (HPH) via a m...
Calcium carbonate is a porous inorganic nanomaterial with huge potential in biomedical applications ...
Cockle shell-derived aragonite calcium carbonate nanoparticles (CACNP) have demonstrated prospect as...
The use of safe and efficient delivery systems, capable of delivering therapeutic agents to subcellu...
Abstract The evolution of nanomaterial in science has brought about a growing increase in nanotechno...
Background: Cockleshell-derived aragonite calcium carbonate nanoparticles were prepared by the top-d...
For the first time, we report here a novel top down catalytic approach for the synthesis of aragonit...
Calcium carbonate has slowly paved its way into the field of nanomaterial research due to its inhere...
Calcium carbonate has slowly paved its way into the field of nanomaterial research due to its inhere...