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Metal Oxide Nanoparticles are infinitesimal particles, supremely smaller in size, typically measured on a nanoscale, incredibly developed from various metals such as Cobalt, Ferrous, Aluminum, Magnesium and many more. Being a product of advanced nanotechnology, these particles have transcended the confines of science beyond imagination, conferring profound implications in sundry fields. Metal Oxide Nanoparticles proffer a novel potential to revolutionize many sectors, including the medical industry, environmental preservation, electronics, energy storage and catalysis amongst others. In the healthcare industry, for instance, they are applied in drug delivery systems, particularly for cancer treatment, due to their ability to directly target tumor cells while causing minimal damage to healthy cells. Furthermore, in environmental management, these particles play an integral role in removing pollutants from water owing to their high sorption capacities.
In light of the field of electronics, metal oxide nanoparticles serve as core components in the fabrication of electronic devices, notable for their unique electric properties as well as high electron mobility. As for energy storage, they are instrumental in improving the performance of batteries and supercapacitors due to their ability to facilitate rapid ion transport and high electronic conductance. Similarly, metal oxide nanoparticles serve as excellent catalysts due to their remarkable surface reactivities, accelerating a wide array of chemical reactions, which are pivotal in the production of various organic compounds.
The paramount advantage of Metal Oxide Nanoparticles lies in their nano-scale size. This small size endows a larger surface area, allowing for greater interaction with their environment and therefore engendering enhanced chemical and biological reactivity as well as a higher absorption capacity. The particles' size enables a substantial enhancement of physical and chemical properties, which can be deployed to great effects in their applications, whether it is cancer treatment, water decontamination, energy storage or catalysis.
At Matexcel, we dedicate ourselves to the research, development and production of high-quality metal oxide nanoparticles, such as Cobalt Oxide, Ferroferric Oxide, Aluminum Oxide, Magnesium Oxide and much more. We are zealous about supporting the growth and innovation of industries that rely on these advanced materials. We understand the potential of these particles and continue to explore new production methods to enhance their capabilities further.
Matexcel is able to produce nanoparticles that not only meet but exceed industry standards in terms of quality, performance, and safety. Additionally, our advanced manufacturing facilities enable us to offer customized solutions, tailoring the characteristics of our nanoparticles to suit the specific needs of our clients.
CAT.NO. | Product Name | Particle Size | Inquiry |
---|---|---|---|
NMP-1165 | Boron Oxide (B2O3) Nanopowder | 50nm | Inquiry |
NMP-1172 | Bismuth Oxide (Bi2O3) Nanopowder | 75-195nm | Inquiry |
NMP-1173 | Bismuth Oxide (Bi2O3) Micron Powder | 10um | Inquiry |
325mesh | Inquiry | ||
NMP-1175 | Barium Titanate (BaTiO3) Nanopowder, Tetragonal | 280nm | Inquiry |
370nm | Inquiry | ||
500nm | Inquiry | ||
NMP-1176 | Barium Titanate (BaTiO3) Nanopowder, Cubic | 45nm | Inquiry |
90nm | Inquiry | ||
NMP-1177 | Barium Iron Oxide (BaFe12O19) Nanopowder | 55nm | Inquiry |
NMP-1178 | Barium Ferrite (BaFe12O19) Micron Powder | 1-3um | Inquiry |
NMP-1180 | Antimony Tin Oxide (ATO) Nanopowder | 28nm | Inquiry |
NMP-1181 | Antimony Oxide (Sb2O3) Nanopowder | 75-210nm | Inquiry |
NMP-1182 | Antimony (III) Oxide (Sb2O3) Micron Powder | 3um | Inquiry |