Percolation thresholdThe percolation threshold is a mathematical concept in percolation theory that describes the formation of long-range connectivity in random systems. Below the threshold a giant connected component does not exist; while above it, there exists a giant component of the order of system size. In engineering and coffee making, percolation represents the flow of fluids through porous media, but in the mathematics and physics worlds it generally refers to simplified lattice models of random systems or networks (graphs), and the nature of the connectivity in them.
MonocoucheUne monocouche est un assemblage compact dit bidimensionnel constitué d'atomes, de molécules ou de cellules. Dans certains cas, on parle de monocouche auto-assemblée ou SAM, de l'anglais self-assembled monolayer. Une monocouche (de Langmuir) ou monocouche insoluble est un assemblage d'un composé organique insoluble d'une seule molécule d'épaisseur étalée à la surface d'une solution aqueuse.
Théorie de la percolationLa théorie de la percolation est une branche de la physique statistique et mathématique qui s'intéresse aux caractéristiques des milieux aléatoires, plus précisément aux ensembles de sommets connectés dans un graphe aléatoire. Cette théorie s'applique notamment en science des matériaux pour formaliser les propriétés d'écoulement dans les milieux poreux et pour la modélisation de phénomènes naturels, comme les incendies. L’histoire de la percolation prend ses racines dans l’industrie du charbon.
Electrical resistance and conductanceThe electrical resistance of an object is a measure of its opposition to the flow of electric current. Its reciprocal quantity is , measuring the ease with which an electric current passes. Electrical resistance shares some conceptual parallels with mechanical friction. The SI unit of electrical resistance is the ohm (Ω), while electrical conductance is measured in siemens (S) (formerly called the 'mho' and then represented by ℧). The resistance of an object depends in large part on the material it is made of.
Nanoparticle–biomolecule conjugateA nanoparticle–biomolecule conjugate is a nanoparticle with biomolecules attached to its surface. Nanoparticles are minuscule particles, typically measured in nanometers (nm), that are used in nanobiotechnology to explore the functions of biomolecules. Properties of the ultrafine particles are characterized by the components on their surfaces more so than larger structures, such as cells, due to large surface area-to-volume ratios. Large surface area-to-volume-ratios of nanoparticles optimize the potential for interactions with biomolecules.
Microscopie à sonde localeLa microscopie à sonde locale (MSL) ou microscopie en champ proche (MCP) ou scanning probe microscopy (SPM) en anglais est une technique de microscopie permettant de cartographier le relief (nano-topographie) ou une autre grandeur physique en balayant la surface à imager à l'aide d'une pointe très fine (la pointe est idéalement un cône se terminant par un seul atome). Le pouvoir de résolution obtenu par cette technique permet d'observer jusqu'à des atomes, ce qui est physiquement impossible avec un microscope optique, quel que soit son grossissement.
Langmuir–Blodgett filmA Langmuir–Blodgett (LB) film is a nanostructured system formed when Langmuir films—or Langmuir monolayers (LM)—are transferred from the liquid-gas interface to solid supports during the vertical passage of the support through the monolayers. LB films can contain one or more monolayers of an organic material, deposited from the surface of a liquid onto a solid by immersing (or emersing) the solid substrate into (or from) the liquid. A monolayer is adsorbed homogeneously with each immersion or emersion step, thus films with very accurate thickness can be formed.
Microscope à effet tunnelthumb|Atomes de silicium à la surface d'un cristal de carbure de silicium (SiC). Image obtenue à l'aide d'un STM. Le microscope à effet tunnel (en anglais, scanning tunneling microscope, STM) est inventé en 1981 par des chercheurs d'IBM, Gerd Binnig et Heinrich Rohrer, qui reçurent le prix Nobel de physique pour cette invention en 1986. C'est un microscope en champ proche qui utilise un phénomène quantique, l'effet tunnel, pour déterminer la morphologie et la densité d'états électroniques de surfaces conductrices ou semi-conductrices avec une résolution spatiale pouvant être égale ou inférieure à la taille des atomes.
Surface reconstructionSurface reconstruction refers to the process by which atoms at the surface of a crystal assume a different structure than that of the bulk. Surface reconstructions are important in that they help in the understanding of surface chemistry for various materials, especially in the case where another material is adsorbed onto the surface. In an ideal infinite crystal, the equilibrium position of each individual atom is determined by the forces exerted by all the other atoms in the crystal, resulting in a periodic structure.
Percolation critical exponentsIn the context of the physical and mathematical theory of percolation, a percolation transition is characterized by a set of universal critical exponents, which describe the fractal properties of the percolating medium at large scales and sufficiently close to the transition. The exponents are universal in the sense that they only depend on the type of percolation model and on the space dimension. They are expected to not depend on microscopic details such as the lattice structure, or whether site or bond percolation is considered.