Solar cell researchThere are currently many research groups active in the field of photovoltaics in universities and research institutions around the world. This research can be categorized into three areas: making current technology solar cells cheaper and/or more efficient to effectively compete with other energy sources; developing new technologies based on new solar cell architectural designs; and developing new materials to serve as more efficient energy converters from light energy into electric current or light absorbers and charge carriers.
Maison solaire passiveUne maison solaire passive est une habitation de type habitat passif, c'est-à-dire conçue pour bénéficier au maximum du rayonnement solaire, grâce à sa conception (forme, orientation, répartition des ouvertures, isolation, inertie thermique...), à la qualité de ses composants (murs, toiture, sol, fenêtres et portes...) et à une ventilation performante qui permet de maîtriser les apports d'air et le degré d'humidité.
Photovoltaic systemA photovoltaic system, also PV system or solar power system, is an electric power system designed to supply usable solar power by means of photovoltaics. It consists of an arrangement of several components, including solar panels to absorb and convert sunlight into electricity, a solar inverter to convert the output from direct to alternating current, as well as mounting, cabling, and other electrical accessories to set up a working system. It may also use a solar tracking system to improve the system's overall performance and include an integrated battery.
Renewable energy commercializationRenewable energy commercialization involves the deployment of three generations of renewable energy technologies dating back more than 100 years. First-generation technologies, which are already mature and economically competitive, include biomass, hydroelectricity, geothermal power and heat. Second-generation technologies are market-ready and are being deployed at the present time; they include solar heating, photovoltaics, wind power, solar thermal power stations, and modern forms of bioenergy.
Silicium amorpheLe silicium amorphe, généralement abrégé a-Si, est la variété allotropique non cristallisée du silicium, c’est-à-dire dans lequel les atomes sont désordonnés et ne sont pas rangés de façon régulière définissant une structure cristalline. Le silicium amorphe peut être déposé en couches minces à basse température sur un grand nombre de substrats, permettant d'envisager une grande variété d'applications microélectroniques. Ce matériau semi-conducteur est couramment utilisé pour réaliser certains panneaux solaires photovoltaïques.
Rooftop solar powerA rooftop solar power system, or rooftop PV system, is a photovoltaic (PV) system that has its electricity-generating solar panels mounted on the rooftop of a residential or commercial building or structure. The various components of such a system include photovoltaic modules, mounting systems, cables, solar inverters and other electrical accessories. Rooftop mounted systems are small compared to utility-scale solar ground-mounted photovoltaic power stations with capacities in the megawatt range, hence being a form of distributed generation.
Oxyde d'indium-étainL'oxyde d'indium-étain (ITO, pour l'anglais indium tin oxide), ou oxyde d'indium dopé à l'étain, est un mélange d'oxyde d'indium(III) et d'oxyde d'étain (IV) SnO, dans la proportion massique typique de 90 % du premier et 10 % du second. Ce composé est incolore et transparent en couches minces, de jaunâtre à gris sous forme massique. La caractéristique principale de l'oxyde d'indium-étain est sa combinaison de conductivité électrique et de transparence optique.
Timeline of solar cellsIn the 19th century, it was observed that the sunlight striking certain materials generates detectable electric current – the photoelectric effect. This discovery laid the foundation for solar cells. Solar cells have gone on to be used in many applications. They have historically been used in situations where electrical power from the grid was unavailable. As the invention was brought out it made solar cells as a prominent utilization for power generation for satellites.
Solar power by countryMany countries and territories have installed significant solar power capacity into their electrical grids to supplement or provide an alternative to conventional energy sources. Solar power plants use one of two technologies: Photovoltaic (PV) systems use solar panels, either on rooftops or in ground-mounted solar farms, converting sunlight directly into electric power. Concentrated solar power (CSP, also known as "concentrated solar thermal") plants use solar thermal energy to make steam, that is thereafter converted into electricity by a turbine.
Cellule photovoltaïque à pérovskiteUne cellule photovoltaïque à pérovskite est un type de cellule photovoltaïque dont la couche active est constituée d'un matériau de formule générale à structure pérovskite dans laquelle A est un cation, généralement de méthylammonium (MA), de formamidinium ou de césium , B est un cation d'étain ou de plomb , et X est un anion halogénure tel que chlorure , bromure ou iodure . Le rendement des cellules photovoltaïques utilisant ces matériaux est en constante augmentation depuis la fin des années 2000.