20Kg/Mm2 900W/M.K Conductive Graphite Powder For Mobile Phone

Basic Information
Place of Origin: Guangdong,China
Certification: ROHS,REACH
Model Number: M-U
Minimum Order Quantity: Negotiation
Price: Negotiation
Packaging Details: Packed In Carton
Delivery Time: 7~10 Days
Payment Terms: T/T
Supply Ability: 1000000 Grams
Detail Information
Material: Graphene Nanoribbon Color: Black
Temperature Range: -40~200℃ Thermal Conductive: 600-900 W/m.K
Tensile Strength: ≧20Kg/mm2 Sample: Available
Type: Powder Elongation: ≧5%
High Light:

900W/m.K conductive graphite powder


20Kg/mm2 natural graphite powder


900W/m.K natural graphite powder

Product Description

Good Performance 600-900 W/m.K Graphene Nanoribbon Used For Mobile Phone
Product Description

  M-U is a graphene nanoribbon thermally conductive copper foil with a high thermal conductivity and high flexibility. Using the graphene material to cover the base of copper metal uniformly, it achieve heat conduction efficiency from the high thermal conductivity, and heat radiation efficiency through carbon atoms, which transfer the heat into infrared radio as to transfer the cooling efficiency. Although it change the thermal infrared radio and communications cooling efficiency.


The structure of graphene nanoribbon has high conductivity, high thermal conductivity and low noise. These excellent qualities make graphene nanoribbons an alternative material for integrated circuit interconnection, potentially replacing copper metals.There's a researcher that's tried to make a quantum dot in a graphene nanocycle by changing the width at a certain place in the nanoscard.


The low dimensional structure of graphene nanoribbon has very important photoelectric properties: particle number inversion and broadband optical gain.These excellent qualities enable graphene nanoribbons to be placed in microcavities or nanocavities to form lasers and amplifiers.According to a study published in October 2012, some researchers are trying to apply graphene nanoribbons to optical communication systems to develop graphene nanolars.



  • Electromagnetic shielding
  • Electric conduction
  • Heat conduction


  •  Mobile phone
  • Computer
  • Reading machine
Property  M-U09T14 M-U18T23 M-U25T30 M-U35T40 M-U50T55 M-U75T80 Unit Test Method




Graphene nanoribbon 




Black Visual


Thermal Conductive


600-900 W/m. K ASTM E1461



Base Material Thickness 9 18 25 35 50 75 μm  ASTM D374
Graphene Thickness 5    


Temperature Range















Tensile Strength






ASTM F-152


















Products Details



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Packing & Shipping 

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Contact Details

Phone Number : +8613560312553

WhatsApp : +8613560312553