Manganese (III) oxide nanoparticles
Dimanganese trioxide is the oxide that sees as manganese oxidation number +3, the lattice’s shape is cubic.
It shows remarkable application in various fields due to promising properties including paramagnetism, semiconducting nature, high specific capacitance, low cost, abundance and environmentally benign nature.
We at Particular Materials synthesize nano Mn2O3 and we produce and supply dispersions with excellent stability, monodispersity and fully disaggregated state.
- To buy Mn2O3 nanoparticles nanopowders and nanodispersions, and for information on pricing, click and request a free quotation now,
- For a Technical Request and for tailor made nanomaterials, don’t hesitate to ask for free support now, click here.
Technical Information
The excellent capacitive properties might be attributed to the high and porous surface area and the uniformity of the mesoporous particles, resulting in the large generation of active sites and a fast ionic transport over the surface of the Mn2O3 electrode.
In this way the prepared mesoporous Mn2O3 materials-based electrode exhibits a high specific capacitance with a good cycling stability also after thousands cycles.
Moreover the optical study of Mn2O3 nanoparticles showed that these nanoparticles could be used in solar cells and photocatalysts due to their very high absorbance in the visible range.
- For specific requirements please send a Technical Support Request
- For a Technical Request and for tailor made nanomaterials, don’t hesitate to ask for free support now, click here.
Related Applications and Industries
Nanostructured Mn2O3 is a semiconductor with a bandgap of 4.2 eV and it has been considered for various semiconductor applications such as electrochemical sensors or biosensors, photo-catalysts, supercapacitors and lithium-ion batteries.
Moreover, Mn2O3 nanoparticles own sufficient binding sites for adsorption of biomolecules including antibodies, protein and DNA, which are required for biosensor fabrications.
Other key applications of dimanganese trioxide nanoparticles are as follows:
- Absorption of radionucleotides
- In electrochemical systems, fuel cells and supercapacitors
- Magnetic data storage and magnetic resonance imaging (MRI)
- In biosensors, biogenic and bioscience application
- In coatings, plastics, nanowires, nanofibers, and textiles
Pricing
Selected nanotechnology research articles
A Rapid Synthesis of Mesoporous Mn2O3 Nanoparticles for Supercapacitor Applications. You-Hyun Son, Phuong T. M. Bui, Ha-Ryeon Lee, Mohammad Shaheer Akhtar, Deb Kumar Shah, O-Bong Yang. 2019.
Sphere-like Mn2O3 nanoparticles: Facile hydrothermal synthesis and adsorption properties. Mostafa Y. Nassar, Alaa S. Amin, Ibrahim S. Ahmed, Samar Abdallah. Journal of the Taiwan Institute of Chemical Engineers, Volume 64, 2016, Pages 79-88.
Dimanganese trioxide (Mn2O3) based label-free electrochemical biosensor for detection of Aflatoxin-B1. Avinash Kumar Singh, Tarun Kumar Dhiman, Lakshmi G.B. V.S., Pratima R. Solanki. Bioelectrochemistry, Volume 137, 2021.