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  2. Graphene production techniques - Wikipedia

    en.wikipedia.org/wiki/Graphene_production_techniques

    A rapidly increasing list of graphene production techniques have been developed to enable graphene's use in commercial applications. [1]Isolated 2D crystals cannot be grown via chemical synthesis beyond small sizes even in principle, because the rapid growth of phonon density with increasing lateral size forces 2D crystallites to bend into the third dimension. [2]

  3. Hummers' method - Wikipedia

    en.wikipedia.org/wiki/Hummers'_Method

    Hummers' method remains a key point of interest because it is an easy method of producing large quantities of graphite oxide. Other groups have been focused on making improvements to the Hummers' method to make it more efficient and environmentally friendly. One such process is eliminating the use of NaNO 3 from the process.

  4. Epitaxial graphene growth on silicon carbide - Wikipedia

    en.wikipedia.org/wiki/Epitaxial_graphene_growth...

    Epitaxial graphene growth on silicon carbide (SiC) by thermal decomposition is a method to produce large-scale few-layer graphene (FLG). Graphene is one of the most promising nanomaterials for the future because of its various characteristics, like strong stiffness and high electric and thermal conductivity .

  5. Microfabrication - Wikipedia

    en.wikipedia.org/wiki/Microfabrication

    The complexity of microfabrication processes can be described by their mask count. This is the number of different pattern layers that constitute the final device. Modern microprocessors are made with 30 masks while a few masks suffice for a microfluidic device or a laser diode.

  6. Nanochemistry - Wikipedia

    en.wikipedia.org/wiki/Nanochemistry

    Nanochemistry is an emerging sub-discipline of the chemical and material sciences that deals with the development of new methods for creating nanoscale materials. [1] The term "nanochemistry" was first used by Ozin in 1992 as 'the uses of chemical synthesis to reproducibly afford nanomaterials from the atom "up", contrary to the nanoengineering and nanophysics approach that operates from the ...

  7. Nanolithography - Wikipedia

    en.wikipedia.org/wiki/Nanolithography

    Quantum optical lithography (QOL), is a diffraction-unlimited method able to write at 1 nm resolution [4] by optical means, using a red laser diode (λ = 650 nm). Complex patterns like geometrical figures and letters were obtained at 3 nm resolution [5] on resist substrate. The method was applied to nanopattern graphene at 20 nm resolution. [6]

  8. List of software for nanostructures modeling - Wikipedia

    en.wikipedia.org/wiki/List_of_software_for...

    Ninithi – carbon nanotube, graphene, and Fullerene modelling software; Materials Design MedeA [13] Materials Studio; Materials Square [14] - a cloud-based materials simulation web platform, provides GUI for Quantum Espresso, LAMMPS, and Open Calphad; MBN Explorer and MBN Studio [15] [16] MD-kMC [17] PARCAS [18] [19] [20] – Open source ...

  9. 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 ...