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  2. Graphene - Wikipedia

    en.wikipedia.org/wiki/Graphene

    Graphene is the strongest material ever tested, [7] [8] with an intrinsic tensile strength of 130 GPa (19,000,000 psi) (with representative engineering tensile strength ~50-60 GPa for stretching large-area freestanding graphene) and a Young's modulus (stiffness) close to 1 TPa (150,000,000 psi).

  3. Mechanical properties of carbon nanotubes - Wikipedia

    en.wikipedia.org/wiki/Mechanical_properties_of...

    Carbon nanotubes are the strongest and stiffest materials yet discovered in terms of tensile strength and elastic modulus respectively. This strength results from the covalent sp 2 bonds formed between the individual carbon atoms. In 2000, a multi-walled carbon nanotube was tested to have a tensile strength of 63 gigapascals (9,100,000 psi).

  4. Ultimate tensile strength - Wikipedia

    en.wikipedia.org/wiki/Ultimate_tensile_strength

    The ultimate tensile strength of a material is an intensive property; therefore its value does not depend on the size of the test specimen.However, depending on the material, it may be dependent on other factors, such as the preparation of the specimen, the presence or otherwise of surface defects, and the temperature of the test environment and material.

  5. The world’s strongest material could be used to make clean ...

    www.aol.com/news/world-strongest-material-could...

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  6. Graphene helix - Wikipedia

    en.wikipedia.org/wiki/Graphene_helix

    These graphene sheets have a tensile strength of 130,000,000,000 pascals which when compared to 400,000,000 pascals that of industrial steel. [7] This shows the possibilities of what this substance can be used for. Graphene is light when compared to materials like industrial steel because it weighs 0.77 milligrams per square meter. [8]

  7. Electronic properties of graphene - Wikipedia

    en.wikipedia.org/wiki/Electronic_properties_of...

    The electronic properties of graphene are significantly influenced by the supporting substrate. [59] [60] The Si(100)/H surface does not perturb graphene's electronic properties, whereas the interaction between it and the clean Si(100) surface changes its electronic states significantly. This effect results from the covalent bonding between C ...

  8. Aerographene - Wikipedia

    en.wikipedia.org/wiki/Aerographene

    Similarly, the compressive strength that describes the yield stress before plastic deformation under compression in graphene aerogels follows a power-law distribution: σ y /E s = (ρ/ρ s) n, where σ y is the compressive strength, ρ is the density of the graphene aerogel, E s is the modulus of graphene, ρ s is the density of graphene, and n ...

  9. Carbon nanofiber - Wikipedia

    en.wikipedia.org/wiki/Carbon_nanofiber

    Regular carbon nanofibers. Stacked-cup carbon nanofiber: electron micrograph (left) and model (right). [1]Carbon nanofibers (CNFs), vapor grown carbon fibers (VGCFs), or vapor grown carbon nanofibers (VGCNFs) are cylindrical nanostructures with graphene layers arranged as stacked cones, cups or plates.