Manganese II III Oxide Nanopowder (Mn3O4, APS: 40-50µm, Purity: 99%)

Manganese II III Oxide Powder

Product: Manganese II III Oxide Powder (Mn3O4, APS: 40-50µm, Purity: 99%)

Quality Control: Each lot of NANOSHEL Manganese II III Oxide Powder was tested successfully.

Manganese II III Oxide Powder

Particles Size Analysis – Mn3O4 Powder

Materials Manganese II III Oxide Powder
Stock No NS6130-05-501
CAS 1317-35-7
Purity 99%
APS 40-50µm
Molecular Weight 228.812 g/mol
Melting Point 1567 °C
Boiling Point 2847 °C
Density 4.86 g/cm3
Appearance Brownish-Black Powder

Experts Review:

Dr. Marcus Tägtmeyer (International Medical and Technological University, Dar es Salaam, Tanzania)


Dr. Marcus Tägtmeyer (International Medical and Technological University, Dar es Salaam, Tanzania)
Manganese(ii iii) Oxide Powder modifications have wide potential applications. The manganese oxide Particles widely applied in the fabrication of super capacitors. For example, graphene oxide MnO2 composites, redox exchange induced manganese oxide embedded polypyrrole composites, construction of composite electrodes comprising manganese dioxide particles distributed in polyaniline–poly and MnO2 particles enrichment in poly Microwires for electrochemical energy storage were reported.


Dr. Ms Jane Li (National Penghu University of Science and Technology, Magong, Penghu, Republic of China)
Dr. Ms Jane Li (National Penghu University of Science and Technology, Magong, Penghu, Republic of China)
Fabrication of metal and metal oxide Microstructures is found to be emerging area in the field of science and technology. Various methods have been employed for the fabrication of these metal oxide Microstructures. Here, the electrochemical fabrication of metal oxide microstructures is found as promising aspect in the field of electrochemical science. Few examples were; electrochemical route for the synthesis of new microstructure magnetic mixed oxides of Mn, Zn, and Fe from an acidic chloride and nitrate medium, electrochemical deposition of bi-metallic microstructures, synthesis of microcrystalline metal oxides using electrochemical deposition under the oxidizing conditions, films of MnO2 particles and H2O2 for the electrochemical catalysis of styrene.


Dr. Willem-Jan de Kleijn Ph.D (Luleå University of Technology, Luleå, Sweden)
Dr. Willem-Jan de Kleijn Ph.D (Luleå University of Technology, Luleå, Sweden)
Most recently, Manganese II III Oxide Nanopowder, including MnO and MnO2, have attracted great interest as anode materials in lithium-ion batteries (LIBs) for their high theoretical capacity, environmental benignity, low cost, and special properties. Up to now, manganese oxides structures with excellent properties and various morphologies have been successfully synthesized. Herein, we provide an in-depth discussion of recent development of the synthesis of manganese oxides materials and their application in the field of LIBs


Dr. JKF Gojukai PhD (Kaiserslautern University of Technology, Kaiserslautern, Rhineland-Palatinate, Germany)
Dr. JKF Gojukai PhD (Kaiserslautern University of Technology, Kaiserslautern, Rhineland-Palatinate, Germany)
Lithium-ion batteries (LIBs) are regarded as a promising rechargeable power sources for hybrid electric vehicles (HEVs) and portable electronic devices for their high specific capacity, long cycle life, and lack of memory. Electrode materials play an important role in the performance of LIBs. It was found that transition metal oxides materials are very appealing anode materials owing to their higher theoretical capacities than that of commercial graphite (372 mA⋅h⋅g−1). Among them, microscales MnO and MnO2 have attracted more and more attention due to the high theoretical capacities, environmentally benign, low cost, and special properties.


Mn3O4

Manganese II III Oxide Nanopowder

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