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  2. Allotropes of carbon - Wikipedia

    en.wikipedia.org/wiki/Allotropes_of_carbon

    The Laves graph or K 4 crystal is a theoretically predicted three-dimensional crystalline metastable carbon structure in which each carbon atom is bonded to three others, at 120° angles (like graphite), but where the bond planes of adjacent layers lie at an angle of 70.5°, rather than coinciding. [34] [35]

  3. Allotropy - Wikipedia

    en.wikipedia.org/wiki/Allotropy

    Diamond and graphite are two allotropes of carbon: pure forms of the same element that differ in crystalline structure.. Allotropy or allotropism (from Ancient Greek ἄλλος (allos) 'other' and τρόπος (tropos) 'manner, form') is the property of some chemical elements to exist in two or more different forms, in the same physical state, known as allotropes of the elements.

  4. Carbon - Wikipedia

    en.wikipedia.org/wiki/Carbon

    The atoms of carbon can bond together in diverse ways, resulting in various allotropes of carbon. Well-known allotropes include graphite, diamond, amorphous carbon, and fullerenes. The physical properties of carbon vary widely with the allotropic form. For example, graphite is opaque and black, while diamond is highly transparent. Graphite is ...

  5. Fullerene - Wikipedia

    en.wikipedia.org/wiki/Fullerene

    Carbon allotropes; Other nanoparticles; Carbon quantum dots; ... The Schlegel diagram is a projection of that skeleton onto one of the faces of the polyhedron ...

  6. Category:Allotropes of carbon - Wikipedia

    en.wikipedia.org/wiki/Category:Allotropes_of_carbon

    Pertains to the various forms that the Carbon element can assume, naturally or otherwise. Wikimedia Commons has media related to Allotropes of carbon . The main article for this category is Allotropes of carbon .

  7. Atomic carbon - Wikipedia

    en.wikipedia.org/wiki/Atomic_carbon

    Atomic carbon has the capacity to donate up to two electron pairs to Lewis acids, or accept up to two pairs from Lewis bases. A proton can join with the atomic carbon by protonation: C + H + → CH + Because of this capture of the proton (H +), atomic carbon and its adducts of Lewis bases, such as water, also have Brønsted–Lowry basic character.

  8. Graphyne - Wikipedia

    en.wikipedia.org/wiki/Graphyne

    Graphyne-n varieties, where n indicates the number of carboncarbon triple bonds in a link between two adjacent hexagons. Graphyne is graphyne-1; graphdiyne is graphyne-2. Graphyne is an allotrope of carbon. Although it has been studied in theoretical models, it is very difficult to synthesize and only small amounts of uncertain purity have ...

  9. Carbon nanotube - Wikipedia

    en.wikipedia.org/wiki/Carbon_nanotube

    A carbon nanotube (CNT) is a tube made of carbon with a diameter in the nanometre range . They are one of the allotropes of carbon. Two broad classes of carbon nanotubes are recognized: Single-walled carbon nanotubes (SWCNTs) have diameters around 0.5–2.0 nanometres, about 100,000