graphene structure allotrope of carbon Modèle 3D

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graphene structure allotrope of carbon Modèle 3D
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  • Formats disponibles:
    Image Textures: jpg 505.70 kb
    Image Textures: hdr 1.04 MB
    3DS MAX: max 7.63 MB
    Autodesk FBX: fbx 72.42 MB
    Wavefront OBJ: obj 41.19 MB
    3DS MAX: max 7.66 MB
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    No
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    No
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  • Géométrie:
    Polygonal
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  • Vus:
    3104
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  • ID de produit:
    241527
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ready to go models of graphene structures showing the crystalline allotropes of carbon. background and hdri spherical map are included.

100% accurate to the real chemical structure, scientific data was used as reference to construct these models.

1) nanotube - rolled graphene 2) graphite - multi layer graphene 3) fullerene - buckyball 4) lonsdaleite 5) mono-layer graphene sheet 6) diamond

versions: 3ds max 2013, 3ds max 2013 - vray 3.2 obj 3ds fbx

graphene is an atomic-scale honeycomb lattice made of carbon atoms. it has the basic structural elements of graphite, carbon nanotubes and fullerenes. in short 'graphene' is the super thin, super strong, transparent, conductive and self-repairing material is poised to revolutionize the future.

graphene is a crystalline allotrope of carbon with 2-dimensional properties. its carbon atoms are densely packed in a regular atomic-scale chicken wire (hexagonal) pattern.

each atom has four bonds, one σ bond with each of its three neighbors and one π-bond that is oriented out of plane.

graphene's hexagonal lattice can be regarded as two interleaving triangular lattices. this perspective was successfully used to calculate the band structure for a single graphite layer using a tight-binding approximation.

graphene's stability is due to its tightly packed carbon atoms.

graphene sheets in solid form usually show evidence in diffraction for graphite's layering. this is true of some single-walled nanostructures. however, unlayered graphene with only rings has been found in the core of presolar graphite onions. tem studies show faceting at defects in flat graphene sheets and suggest a role for two-dimensional crystallization from a melt.

graphene can self-repair holes in its sheets, when exposed to molecules containing carbon, such as hydrocarbons. bombarded with pure carbon atoms, the atoms perfectly align into hexagons, completely filling the holes. Prêt à imprimer: Non
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Télécharger graphene structure allotrope of carbon Modèle 3D jpg hdr max fbx obj max De elementengine

carbon structure graphene fullerene buckminste buckminsterfullerene buckyball nano nanotube nanotechnology modecule atom fuller graphite diamond molecule spherical nanosheet ionsdaleite science
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