Potential applications of graphenePotential graphene applications include lightweight, thin, and flexible electric/photonics circuits, solar cells, and various medical, chemical and industrial processes enhanced or enabled by the use of new graphene materials. In 2008, graphene produced by exfoliation was one of the most expensive materials on Earth, with a sample the area of a cross section of a human hair costing more than 1,000asofApril2008(about100,000,000/cm2). Since then, exfoliation procedures have been scaled up, and now companies sell graphene in large quantities. SuperlubricityIn physics (specifically tribology), superlubricity is a regime of motion in which friction vanishes or very nearly vanishes. What is a "vanishing" friction level is not clear, which makes the term quite vague. As an ad hoc definition, a kinetic coefficient of friction less than 0.01 can be adopted. This definition also requires further discussion and clarification. Superlubricity may occur when two crystalline surfaces slide over each other in dry incommensurate contact.
Dynamique moléculaireLa dynamique moléculaire est une technique de simulation numérique permettant de modéliser l'évolution d'un système de particules au cours du temps. Elle est particulièrement utilisée en sciences des matériaux et pour l'étude des molécules organiques, des protéines, de la matière molle et des macromolécules. En pratique, la dynamique moléculaire consiste à simuler le mouvement d'un ensemble de quelques dizaines à quelques milliers de particules dans un certain environnement (température, pression, champ électromagnétique, conditions aux limites.
Déformation plastiqueLa théorie de la plasticité traite des déformations irréversibles indépendantes du temps, elle est basée sur des mécanismes physiques intervenant dans les métaux et alliages mettant en jeu des mouvements de dislocations (un réarrangement de la position relative des atomes, ou plus généralement des éléments constitutifs du matériau) dans un réseau cristallin sans influence de phénomènes visqueux ni présence de décohésion endommageant la matière. Une des caractéristiques de la plasticité est qu’elle n’apparaît qu’une fois un seuil de charge atteint.
Écrouissagedroite|vignette|Laminage : l'amincissement provoque un durcissement du métal. Lécrouissage d'un métal est le durcissement d'un métal ductile sous l'effet de sa déformation plastique (déformation permanente). Ce mécanisme de durcissement explique en grande partie les différences de tenues et résistance entre les pièces métalliques obtenues par corroyage (c'est-à-dire par déformation plastique : laminage, tréfilage, forgeage) et les pièces de fonderie (simplement coulées dans un moule).
Stress–strain analysisStress–strain analysis (or stress analysis) is an engineering discipline that uses many methods to determine the stresses and strains in materials and structures subjected to forces. In continuum mechanics, stress is a physical quantity that expresses the internal forces that neighboring particles of a continuous material exert on each other, while strain is the measure of the deformation of the material. In simple terms we can define stress as the force of resistance per unit area, offered by a body against deformation.
NanosensorNanosensors are nanoscale devices that measure physical quantities and convert these to signals that can be detected and analyzed. There are several ways proposed today to make nanosensors; these include top-down lithography, bottom-up assembly, and molecular self-assembly. There are different types of nanosensors in the market and in development for various applications, most notably in defense, environmental, and healthcare industries.
Yield (engineering)In materials science and engineering, the yield point is the point on a stress-strain curve that indicates the limit of elastic behavior and the beginning of plastic behavior. Below the yield point, a material will deform elastically and will return to its original shape when the applied stress is removed. Once the yield point is passed, some fraction of the deformation will be permanent and non-reversible and is known as plastic deformation.
Oxyde de graphiteL'oxyde de graphite, autrefois appelé oxyde graphitique ou acide graphitique, est un composé inorganique de carbone, oxygène et hydrogène dans des ratios atomiques variables. Il est obtenu en traitant du graphite avec des oxydants forts. Le produit le plus oxydé est le solide jaune avec un ratio C:O entre 2,1 et 2,9 qui conserve la structure en couche du graphite mais avec des espaces intercouches beaucoup plus larges et irréguliers.
Scanning probe lithographyScanning probe lithography (SPL) describes a set of nanolithographic methods to pattern material on the nanoscale using scanning probes. It is a direct-write, mask-less approach which bypasses the diffraction limit and can reach resolutions below 10 nm. It is considered an alternative lithographic technology often used in academic and research environments. The term scanning probe lithography was coined after the first patterning experiments with scanning probe microscopes (SPM) in the late 1980s.