Product | Nickel Oxide Nanoparticles | |
Stock No | NS6130-03-339 | |
CAS | 1313-99-1 | Confirm |
HS Code | 28259090 | Confirm |
Purity | 99.9 % | Confirm |
APS | 200nm | Confirm |
Molecular Formula | NiO | Confirm |
Molecular Weight | 74.692 g/mol | Confirm |
Form | Powder | Confirm |
Color | Dark green/black/gray | Confirm |
Density | 6.67 g/cm³ | Confirm |
Melting Point | 1955 °C | Confirm |
Solubility | Soluble in acids & ammonium hydroxide | |
Quality Control | Each Lot of Nickel Oxide Nanoparticles was tested successfully | |
Main Inspect Verifier | Manager QC |
Typical Chemical Analysis
Assay | 99.9% |
Other Metal | 850ppm |
Nickel oxide nanoparticles have a wide range of applications in the manufacturing of magnetic materials, alkaline battery cathodes, dye-sensitized solar cells, semiconductors, solid oxide fuel cells (SOFC), antiferromagnetic layers, p-type transparent conducting films, electrochromic films, heterogeneous catalytic materials and gas sensors. Also, nanocrystalline NiO powder shows a superparamagnetism effect; then which can be used for drug delivery and MRI agent.
Nickel oxide nanoparticles (NiO NPs) as a nanocatalyst for the synthesis of organic derivatives have emerged a considerable interest due to their inherently large surface-to-volume ratio and tunable morphology as compared with the bulk metals. Nickel oxide is one of the transitional metal oxide nanoparticles. It is also a semiconducting material with diverse applications. Nickel oxide nanoparticle contains low toxic and well biocompatibility. It consists of a lot of applications like a gas sensor, energetic materials, electrochemical supercapacitors, and solar cell battery cathodes.
Nickel oxide nanoparticles (NiO) has been received considerable attention due to its outstanding electrical, magnetic and catalytic properties. Their wide range of applications in various fields included the fabrication of catalysis, electrochromic films, fuel cell electrodes and gas sensors, battery cathodes, pn heterojunction, magnetic materials, photovoltaic devices, electrochemical supercapacitors, smart windows, and dye-sensitized photocathodes.
Nickel oxide nanoparticles have been extensively investigated due to their properties and potential applications in many fields. Nickel oxide is also an interesting anode material for lithium-ion batteries owing to its high chemical and thermal stability and low cost. Many research scientists are working toward the synthesis of high-quality NiO nanoparticles using various methods.
Nickel oxide nanoparticles NiO is an important transition metal oxide with cubic lattice structure. It has attracted increasing attention owing to potential use in a variety of applications such as catalysis, battery cathodes, gas sensors, electrochromic films, and magnetic materials. It can also be extensively used in dye-sensitized photocathode. It exhibits anodic electrochromism, excellent durability and electrochemical stability, large spin optical density and various manufacturing possibilities.
Nickel oxide nanoparticles have a wide range of applications in the manufacturing of magnetic materials, alkaline battery cathodes, dye-sensitized solar cells, semiconductors, solid oxide fuel cells (SOFC), antiferromagnetic layers, p-type transparent conducting films, electrochromic films, heterogeneous catalytic materials and gas sensors. Also, nanocrystalline NiO powder shows a superparamagnetism effect; then which can be used for drug delivery and MRI agent.
Nickel oxide nanoparticles NiO is an important transition metal oxide with cubic lattice structure. It has attracted increasing attention owing to potential use in a variety of applications such as catalysis, battery cathodes, gas sensors, electrochromic films, and magnetic materials. It can also be extensively used in dye-sensitized photocathode. It exhibits anodic electrochromism, excellent durability and electrochemical stability, large spin optical density and various manufacturing possibilities.
Nickel oxide nanoparticles (NiO) has been received considerable attention due to its outstanding electrical, magnetic and catalytic properties. Their wide range of applications in various fields included the fabrication of catalysis, electrochromic films, fuel cell electrodes and gas sensors, battery cathodes, pn heterojunction, magnetic materials, photovoltaic devices, electrochemical supercapacitors, smart windows, and dye-sensitized photocathodes.
Nickel oxide nanoparticles have been extensively investigated due to their properties and potential applications in many fields. Nickel oxide is also an interesting anode material for lithium-ion batteries owing to its high chemical and thermal stability and low cost. Many research scientists are working toward the synthesis of high-quality NiO nanoparticles using various methods.
Nickel oxide nanoparticles (NiO NPs) as a nanocatalyst for the synthesis of organic derivatives have emerged a considerable interest due to their inherently large surface-to-volume ratio and tunable morphology as compared with the bulk metals. Nickel oxide is one of the transitional metal oxide nanoparticles. It is also a semiconducting material with diverse applications. Nickel oxide nanoparticle contains low toxic and well biocompatibility. It consists of a lot of applications like a gas sensor, energetic materials, electrochemical supercapacitors, and solar cell battery cathodes.
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Nickel Oxide Nanoparticles (NiO, Purity: 99.9 %, APS: 200nm)