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    • INTELLIGENT MATERIALS PRIVATE LIMITED Follow
    • Carbon Nanotubes,Silver Nanoparticles,Aluminium Nanoparticles,Silicon Nanoparticles,copper Nanoparticles
      211, Sector-12, Chandigarh, Haryana, India
      Totally has 1 empolyees in Tradesns

    Graphene(Electrical Grade)
    Follow
    • Place of Origin:
      Delaware, United States
    • Brand Name:
      Nanoshel
    • Model Number:
      NS-6130-03-367
    • Application:
      Carrier Of Chemical Activator
    • Shape:
      Carbon Blocks
    • Dimensions:
      Size Accpted
    • Product Type:
      Carbon Additive
    • C Content (%):
      Carbon >99.99%
    • Working Temperature:
      Room Temperature to 600 Degrees C
    • S Content (%):
      0.005%
    • N Content (%):
      0.001%
    • H Content (%):
      0.009%
    • Ash Content (%):
      <.001%
    • Volatile:
      non volatile
    • colour:
      black
    • Deliverability: 100 Kilogram/Kilograms per Week
    • Port: New Delhi
    • US $ 30-120/Kilogram(Minimal Quantities 5Kilogram)
    Vivek·Gupta
    Chat online
    INTELLIGENT MATERIALS PRIVATE LIMITED
    India
    Manufacturer
    101 - 200 People
    Export Model:
    Export Identification:
    Main Products:Carbon Nanotubes,Silver Nanoparticles,Aluminium Nanoparticles,Silicon Nanoparticles,copper Nanoparticles
    • Products Description
    • Review List
      Quick Details
    • Place of Origin:
      Delaware, United States
    • Brand Name:
      Nanoshel
    • Model Number:
      NS-6130-03-367
    • Application:
      Carrier Of Chemical Activator
    • Shape:
      Carbon Blocks
    • Dimensions:
      Size Accpted
    • Product Type:
      Carbon Additive
    • C Content (%):
      Carbon >99.99%
    • Working Temperature:
      Room Temperature to 600 Degrees C
    • S Content (%):
      0.005%
    • N Content (%):
      0.001%
    • H Content (%):
      0.009%
    • Ash Content (%):
      <.001%
    • Volatile:
      non volatile
    • colour:
      black

    The mechanical properties of monolayer graphene including the Young’s modulus and fracture strength have been investigated by numerical simulations such as molecular dynamics. ?The Young’s modulus of fewlayer graphene was experimentally investigated with force-displacement measurements by atomic force microscopy (AFM) on a strip of graphene suspended over trenches. Circular membranes of few-layer graphene were also characterized by force-volume measurements in AFM.

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