Increased request for metal and metal oxide nanoparticles nanoparticles has led to their large-scale production using high-energy methods with various toxic solvents. This cause environmental contamination, thus eco-friendly “green” synthesis methods has become necessary. An alternative way to synthesize metal nanoparticles includes using bioresources, such as plants and plant products, bacteria, fungi, yeast, algae, etc. “Green” synthesis has low toxicity, is safe for human health and environment compared to other methods, meaning it is the best approach for obtaining metal and metal oxide nanoparticles. This review reveals 12 principles of “green” chemistry and examples of biological components suitable for “green” synthesis, as well as m...
Currently, thousands of tons of metallic nanoparticles (MNPs) are produced and utilized in nano-enab...
The field of nanotechnology is advancing rapidly due to its extensive applications in distinct field...
The past decade has witnessed a &nb...
Nanotechnology emerged as a scientific innovation in the 21st century. Metallic nanoparticles (metal...
Metal nanoparticles (MNPs) and metal oxide nanoparticles (MONPs) are used in numerous fields. The ne...
Bioresource-based green synthesis of nanoparticles has gained significant interest as an emerging te...
In recent years, the development of efficient green chemistry methods for synthesis of metal nanopar...
Synthesis of Nobel metal nanoparticles, play a key role in the field of medicine. Plants contain a s...
Chemical reducing and capping reagents are largely used in synthesizing metal oxide nanoparticles wh...
In recent times, metal oxide nanoparticles (NPs) have been regarded as having important commercial u...
Ferrous oxide nanoparticles (IONPs) formed from plant materials have been considered as chemically f...
Recent advances in nanoscience and nanotechnology have also led to the development of novel nanomate...
Synthesis of Bionanomaterials for Biomedical Applications summarizes a range of procedures, includin...
Nanoparticles in different field of science have a wide range of utility. They come in different for...
Nanomaterial innovation is the primary catalyst of advancement in nanotechnology. Although there are...
Currently, thousands of tons of metallic nanoparticles (MNPs) are produced and utilized in nano-enab...
The field of nanotechnology is advancing rapidly due to its extensive applications in distinct field...
The past decade has witnessed a &nb...
Nanotechnology emerged as a scientific innovation in the 21st century. Metallic nanoparticles (metal...
Metal nanoparticles (MNPs) and metal oxide nanoparticles (MONPs) are used in numerous fields. The ne...
Bioresource-based green synthesis of nanoparticles has gained significant interest as an emerging te...
In recent years, the development of efficient green chemistry methods for synthesis of metal nanopar...
Synthesis of Nobel metal nanoparticles, play a key role in the field of medicine. Plants contain a s...
Chemical reducing and capping reagents are largely used in synthesizing metal oxide nanoparticles wh...
In recent times, metal oxide nanoparticles (NPs) have been regarded as having important commercial u...
Ferrous oxide nanoparticles (IONPs) formed from plant materials have been considered as chemically f...
Recent advances in nanoscience and nanotechnology have also led to the development of novel nanomate...
Synthesis of Bionanomaterials for Biomedical Applications summarizes a range of procedures, includin...
Nanoparticles in different field of science have a wide range of utility. They come in different for...
Nanomaterial innovation is the primary catalyst of advancement in nanotechnology. Although there are...
Currently, thousands of tons of metallic nanoparticles (MNPs) are produced and utilized in nano-enab...
The field of nanotechnology is advancing rapidly due to its extensive applications in distinct field...
The past decade has witnessed a &nb...