Third-generation photovoltaic cellThird-generation photovoltaic cells are solar cells that are potentially able to overcome the Shockley–Queisser limit of 31–41% power efficiency for single bandgap solar cells. This includes a range of alternatives to cells made of semiconducting p-n junctions ("first generation") and thin film cells ("second generation"). Common third-generation systems include multi-layer ("tandem") cells made of amorphous silicon or gallium arsenide, while more theoretical developments include frequency conversion, (i.e.
Hybrid solar cellHybrid solar cells combine advantages of both organic and inorganic semiconductors. Hybrid photovoltaics have organic materials that consist of conjugated polymers that absorb light as the donor and transport holes. Inorganic materials in hybrid cells are used as the acceptor and electron transporter in the structure. The hybrid photovoltaic devices have a potential for not only low-cost by roll-to-roll processing but also for scalable solar power conversion. Solar cells are devices that convert sunlight into electricity by the photovoltaic effect.
Centrale solaire photovoltaïquethumb|Le Nellis Solar Power Plant comprend solaires PV sur (). Une centrale solaire photovoltaïque est un dispositif technique de production d'électricité renouvelable par des capteurs solaires photovoltaïques reliés entre eux (en série et en parallèle) et raccordé au réseau électrique par des onduleurs. Les centrales solaires sont de plus en plus puissantes (plus de en 2012), contrairement aux systèmes solaires photovoltaïques autonomes destinés à l'alimentation en électricité de bâtiments ou d'installations isolées (autoconsommation) dont la puissance dépasse rarement .
Photovoltaic system performancePhotovoltaic system performance is a function of the climatic conditions, the equipment used and the system configuration. PV performance can be measured as the ratio of actual solar PV system output vs expected values, the measurement being essential for proper solar PV facility's operation and maintenance. The primary energy input is the global light irradiance in the plane of the solar arrays, and this in turn is a combination of the direct and the diffuse radiation.
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.
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.
Solar fuelA solar fuel is a synthetic chemical fuel produced from solar energy. Solar fuels can be produced through photochemical (i.e. activation of certain chemical reactions by photons), photobiological (i.e., artificial photosynthesis), and electrochemical reactions (i.e. using the electricity from solar panels to drive a chemical reaction). Solar fuels can also be produced by thermochemical reactions (i.e., through the use of solar heat supplied by concentrated solar thermal energy to drive a chemical reaction).
Boîte quantiqueUne boîte quantique ou point quantique, aussi connu sous son appellation anglophone de quantum dot, est une nanostructure de semi-conducteurs. De par sa taille et ses caractéristiques, elle se comporte comme un puits de potentiel qui confine les électrons (et les trous) dans les trois dimensions de l'espace, dans une région d'une taille de l'ordre de la longueur d'onde des électrons (longueur d'onde de De Broglie), soit quelques dizaines de nanomètres dans un semi-conducteur.
Copper in renewable energyRenewable energy sources such as solar, wind, tidal, hydro, biomass, and geothermal have become significant sectors of the energy market. The rapid growth of these sources in the 21st century has been prompted by increasing costs of fossil fuels as well as their environmental impact issues that significantly lowered their use. Copper plays an important role in these renewable energy systems. Copper usage averages up to five times more in renewable energy systems than in traditional power generation, such as fossil fuel and nuclear power plants.
Récolte d'énergieLa récolte d'énergie (energy harvesting ou energy scavenging en anglais) est le processus par lequel de l'énergie est tirée de sources externes (solaire, éolienne, thermique, vibratoire, cinétique, chimique, etc.) en quantités infinitésimales, puis emmagasinée pour servir au fonctionnement autonome d'appareils portables de petite taille comme ceux de l'électronique vestimentaire (wearable electronics en anglais), les réseaux de capteurs sans fil mais aussi des applications de grande taille, notamment pour les sources thermiques: fonderies, spatial (générateur thermoélectrique à radioisotope), etc.