Graphene nanoribbonGraphene nanoribbons (GNRs, also called nano-graphene ribbons or nano-graphite ribbons) are strips of graphene with width less than 100 nm. Graphene ribbons were introduced as a theoretical model by Mitsutaka Fujita and coauthors to examine the edge and nanoscale size effect in graphene. Large quantities of width-controlled GNRs can be produced via graphite nanotomy, where applying a sharp diamond knife on graphite produces graphite nanoblocks, which can then be exfoliated to produce GNRs as shown by Vikas Berry.
Nanotube de carbonethumb|Représentation d'un nanotube de carbone. (cliquer pour voir l'animation tridimensionnelle). thumb|Un nanotube de carbone monofeuillet. thumb|Extrémité d'un nanotube, vue au microscope électronique. Les nanotubes de carbone (en anglais, carbon nanotube ou CNT) sont une forme allotropique du carbone appartenant à la famille des fullerènes. Ils sont composés d'un ou plusieurs feuillets d'atomes de carbone enroulés sur eux-mêmes formant un tube. Le tube peut être fermé ou non à ses extrémités par une demi-sphère.
Graphene oxide paperGraphene oxide paper or graphite oxide paper is a material fabricated from graphite oxide. Micrometer thick films of graphene oxide paper are also named as graphite oxide membranes (in the 1960s) or (more recently) graphene oxide membranes. The membranes are typically obtained by slow evaporation of graphene oxide solution or by the filtration method. The material has exceptional stiffness and strength, due to the intrinsic strength of the two-dimensional graphene backbone and to its interwoven layer structure which distributes loads.
Microscopie à super-résolutionLa microscopie à super-résolution est un ensemble de techniques permettant d'imager en microscopie optique des objets à une résolution à l’échelle nanométrique. Elle se démarque par le fait que la résolution obtenue n'est plus limitée par le phénomène de diffraction. Du fait de la diffraction de la lumière, la résolution d’un microscope optique conventionnel est en principe limitée, indépendamment du capteur utilisé et des aberrations ou imperfections des lentilles.
Stem cell controversyThe stem cell controversy is the consideration of the ethics of research involving the development and use of human embryos. Most commonly, this controversy focuses on embryonic stem cells. Not all stem cell research involves human embryos. For example, adult stem cells, amniotic stem cells, and induced pluripotent stem cells do not involve creating, using, or destroying human embryos, and thus are minimally, if at all, controversial.
Cell growthCell growth refers to an increase in the total mass of a cell, including both cytoplasmic, nuclear and organelle volume. Cell growth occurs when the overall rate of cellular biosynthesis (production of biomolecules or anabolism) is greater than the overall rate of cellular degradation (the destruction of biomolecules via the proteasome, lysosome or autophagy, or catabolism). Cell growth is not to be confused with cell division or the cell cycle, which are distinct processes that can occur alongside cell growth during the process of cell proliferation, where a cell, known as the mother cell, grows and divides to produce two daughter cells.
Immunité cellulaireCell-mediated immunity or cellular immunity is an immune response that does not involve antibodies. Rather, cell-mediated immunity is the activation of phagocytes, antigen-specific cytotoxic T-lymphocytes, and the release of various cytokines in response to an antigen. In the late 19th century Hippocratic tradition medicine system, the immune system was imagined into two branches: humoral immunity, for which the protective function of immunization could be found in the humor (cell-free bodily fluid or serum) and cellular immunity, for which the protective function of immunization was associated with cells.
Matériau bidimensionnelUn matériau bidimensionnel, parfois appelé matériau monocouche ou matériau 2D, est un matériau constitué d'une seule couche d'atomes ou de molécules. Depuis l'isolement du graphène (une seule couche de graphite) en 2004, beaucoup de recherches ont été réalisées pour isoler d'autres matériaux bidimensionnels en raison de leurs caractéristiques inhabituelles et pour une potentielle utilisation dans des applications telles que le photovoltaïque, les semi-conducteurs et la purification de l'eau.
MicroscopieLa microscopie est un ensemble de techniques d' des objets de petites dimensions. Quelle que soit la technique employée, l'appareil utilisé pour rendre possible cette observation est appelé un . Des mots grecs anciens mikros et skopein signifiant respectivement « petit » et « examiner », la microscopie désigne étymologiquement l'observation d'objets invisibles à l'œil nu. On distingue principalement trois types de microscopies : la microscopie optique, la microscopie électronique et la microscopie à sonde locale.
Progenitor cellA progenitor cell is a biological cell that can differentiate into a specific cell type. Stem cells and progenitor cells have this ability in common. However, stem cells are less specified than progenitor cells. Progenitor cells can only differentiate into their "target" cell type. The most important difference between stem cells and progenitor cells is that stem cells can replicate indefinitely, whereas progenitor cells can divide only a limited number of times. Controversy about the exact definition remains and the concept is still evolving.