Carbon Nanotubes Open Access Journals

 A nanotube could be a rounded material, made from carbon, having a diameter mensuration on the millimicron scale. A millimicron is simple fraction of a meter, or concerning one ten-thousandth of the thickness of a personality's hair. The carbon layer seems somewhat sort of a folded meshwork with endless unbroken polygonal shape mesh and carbon molecules at the apexes of the hexagons. Carbon Nanotubes have several structures, differing long, thickness, and within the style of helicity and range of layers. though they're shaped from primarily identical carbon sheet, their electrical characteristics take issue reckoning on these variations, acting either as metals or as semiconductors. the highest open access journals area unit freely on the market on the general public net domain, permitting any finish users to scan, download, copy, distribute, prink, search or link to the complete texts of the articles. These offer top quality, meticulously reviewed and speedy publication, to cater the insistent want of scientific community. These journals area unit indexed with all their citations noted. Carbon nanotubes (CNTs) area unit cylindrical molecules that accommodates folded sheets of single-layer carbon atoms (graphene). they will be single-walled (SWCNT) with a diameter of but one millimicron (nm) or multi-walled (MWCNT), consisting of many concentrically interlinked nanotubes, with diameters reaching quite one hundred nm. Their length will reach many micrometers or maybe millimeters. Like their building block graphene, CNTs area unit with chemicals warranted with sp2 bonds, an especially robust sort of molecular interaction. This feature combined with carbon nanotubes’ natural inclination to rope along via van der Waals forces, offer the chance to develop ultra-high strength, low-weight materials that possess extremely semiconductive electrical and thermal properties. This makes them extremely enticing for various applications.The rolling-up direction (rolling-up or chiral vector) of the graphene layers determines the electrical properties of the nanotubes. Chirality describes the angle of the nanotube's polygonal shape carbon-atom lattice

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