MAX Phase

MAX Special Ceramics Material Molybdenum Gallium Carbide Mo2Ga2C Powder

Item No.: Tr-Mo2Ga2C
Molybdenum gallium carbide is a new member of ceramic materials, which combines many advantages of metals and ceramics. Mo2Ga2C powder has extremely excellent high temperature mechanical properties.
Purity: 99%
Particle Size: 200mesh, 400mesh
INQUIRY
Description
Molybdenum Gallium Carbide Powder Properties
About Molybdenum Gallium Carbide Mo2Ga2C Powder:
Max phase ceramics is a new type of conductive ceramic material that can be processed, and Mo2Ga2C Powder is one of them. This kind of ceramics contains more than 60 ternary carbides or nitride compounds.M represents the front metal element of the transition group; A represents group elements, mainly elements of the third group and the fourth group; X is for carbon or nitrogen. Molybdenum Gallium Carbide (Mo2Ga2C) is a new type of ceramic material, which combines many advantages of metal and ceramic.Mo2Ga2C Powder has excellent mechanical properties at high temperatures. TRUNNANO is a trusted global Molybdenum Gallium Carbide Mo2Ga2C Powder supplier. Feel free to send an inquiry about the latest price of Tantalum Aluminum Carbide at any time.

Product Performance of Molybdenum Gallium Carbide Mo2Ga2C Powder :
Molybdenum Gallium Carbide Mo2Ga2C Powder has high strength and elastic modulus, high thermal conductivity and electrical conductivity, and good workability.

Technical Parameter of Molybdenum Gallium Carbide Mo2Ga2C Powder :
Product Name MF Purity Particle Size Molecular Weight Melting Point Color
Molybdenum Gallium Carbide Mo2Ga2C 99% 200mesh,
400mesh
343.34 N/A Gray Black
 
How is Molybdenum Gallium Carbide Mo2Ga2C Powder Produced? 
1. Weighing molybdenum powder, gallium powder and toner, and then ball-milling mixed powder;
2. The mixed powder into the graphite boat, and then into the reactor, and filled with inert gas, ignition, self-spreading reaction, cooling after crushing, sifting, drying to get Mo2Ga2C ceramic powder. The method has the advantages of fast reaction speed, short synthesis time, low energy consumption, low cost and high production efficiency, and the obtained Mo2Ga2C ceramic powder has high purity. The Mo2Ga2C ceramic powder obtained by the invention can be used in aviation, aerospace, electronic industry and nuclear industry, etc.
 
Applications of Molybdenum Gallium Carbide Mo2Ga2C Powder:
MAX has been widely used in nanometer adsorption, biosensors, ion screening, catalysis, lithium-ion batteries, supercapacitors, lubrication and many other fields.Mo2Ga2C Powder can be used for energy storage, catalysis, analytical chemistry, mechanics, adsorption, biology, microelectronics, sensors, etc.

 

Storage Condition of Molybdenum Gallium Carbide Mo2Ga2C Powder :
The damp reunion will affect Mo2Ga2C Powder dispersion performance and using effects, therefore, Molybdenum Gallium Carbide Mo2Ga2C Powder should be sealed in vacuum packing and stored in the cool and dry room, Tantalum aluminum carbide can not be exposure to air. In addition, the Mo2Ga2C Powder should be avoided under stress.

Packing & Shipping of Molybdenum Gallium Carbide Mo2Ga2C Powder :
We have many different kinds of packing which depend on the Molybdenum Gallium Carbide Mo2Ga2C Powder quantity.
Molybdenum Gallium Carbide Mo2Ga2C Powder packing: vacuum packing, 100g, 500g or 1kg/bag, 25kg/barrel, or as your request.
Molybdenum Gallium Carbide Mo2Ga2C Powder shipping: could be shipped out by sea, by air, by express as soon as possible once payment receipt.




 

Molybdenum Gallium Carbide Powder Properties

Other Names Molybdenum carbide/Gallium carbide MXene,
Advanced Max/Mxene Powder, Mo:Ga:C, Mo2Ga2C powder
CAS No. N/a
Compound Formula Mo2Ga2C
Molecular Weight 343.34
Appearance Gray to Black Powder
Melting Point N/A
Boiling Point N/A
Density N/A
Solubility in H2O N/A
Thermal Expansion 8.7-8.9 × 10-6 K-1
   
   

Molybdenum Gallium Carbide Powder Health & Safety Information

Signal Word N/A
Hazard Statements N/A
Hazard Codes N/A
Risk Codes N/A
Safety Statements N/A
Transport Information N/A
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