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  2. 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 ...

  3. Graphene plasmonics - Wikipedia

    en.wikipedia.org/wiki/Graphene_plasmonics

    So far, the graphene plasmonic effects have been demonstrated for different applications ranging from light modulation [15] [16] to biological/chemical sensing. [17] [18] [19] High-speed photodetection at 10 Gbit/s based on graphene and 20-fold improvement on the detection efficiency through graphene/gold nanostructure were also reported. [20]

  4. Graphene - Wikipedia

    en.wikipedia.org/wiki/Graphene

    Graphene is the only form of carbon (or solid material) in which every atom is available for chemical reaction from two sides (due to the 2D structure). Atoms at the edges of a graphene sheet have special chemical reactivity. Graphene has the highest ratio of edge atoms of any allotrope. Defects within a sheet increase its chemical reactivity ...

  5. Quantum capacitance - Wikipedia

    en.wikipedia.org/wiki/Quantum_capacitance

    The quantum capacitance of graphene is relevant to understanding and modeling gated graphene. [4] It is also relevant for carbon nanotubes. [5] In modeling and analyzing dye-sensitized solar cells, the quantum capacitance of the sintered TiO 2 nanoparticle electrode is an important effect, as described in the work of Juan Bisquert. [2] [6] [7]

  6. Two-dimensional electron gas - Wikipedia

    en.wikipedia.org/wiki/Two-dimensional_electron_gas

    The two-dimensional electron system in graphene can be tuned to either a 2DEG or 2DHG (2-D hole gas) by gating or chemical doping. This has been a topic of current research due to the versatile (some existing but mostly envisaged) applications of graphene. [2] A separate class of heterostructures that can host 2DEGs are oxides.

  7. Twistronics - Wikipedia

    en.wikipedia.org/wiki/Twistronics

    Atomic scale moiré pattern created by overlapping two skewed sheets of graphene, a hexagonal lattice composed of carbon atoms.. Twistronics (from twist and electronics) is the study of how the angle (the twist) between layers of two-dimensional materials can change their electrical properties.

  8. Artificial lattice - Wikipedia

    en.wikipedia.org/wiki/Artificial_lattice

    Research has been done on multiple geometries and one of the most notable being what is called molecular graphene (in order to mimic graphene structure). Molecular graphene is a part of two-dimensional artificial lattices. Artificial lattices can be studied to test theoretical topology predictions or for their engineered electronic proprieties.

  9. 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 .