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.
Cellule photovoltaïque organiquevignette|On peut apercevoir les cellules photovoltaïques organiques Les cellules photovoltaïques organiques sont des cellules photovoltaïques dont au moins la couche active est constituée de molécules organiques. Leur développement constitue une tentative de réduction du coût de l'électricité photovoltaïque, sans conteste la principale barrière pour cette technologie, mais on espère aussi qu'elles seront plus fines, flexibles, faciles et moins chères à produire, tout en étant résistantes.
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.
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.
Quadrupole mass analyzerIn mass spectrometry, the quadrupole mass analyzer (or quadrupole mass filter) is a type of mass analyzer originally conceived by Nobel laureate Wolfgang Paul and his student Helmut Steinwedel. As the name implies, it consists of four cylindrical rods, set parallel to each other. In a quadrupole mass spectrometer (QMS) the quadrupole is the mass analyzer - the component of the instrument responsible for selecting sample ions based on their mass-to-charge ratio (m/z).
Mass spectral interpretationMass spectral interpretation is the method employed to identify the chemical formula, characteristic fragment patterns and possible fragment ions from the mass spectra. Mass spectra is a plot of relative abundance against mass-to-charge ratio. It is commonly used for the identification of organic compounds from electron ionization mass spectrometry. Organic chemists obtain mass spectra of chemical compounds as part of structure elucidation and the analysis is part of many organic chemistry curricula.
Nanocrystal solar cellNanocrystal solar cells are solar cells based on a substrate with a coating of nanocrystals. The nanocrystals are typically based on silicon, CdTe or CIGS and the substrates are generally silicon or various organic conductors. Quantum dot solar cells are a variant of this approach which take advantage of quantum mechanical effects to extract further performance. Dye-sensitized solar cells are another related approach, but in this case the nano-structuring is a part of the substrate.
Resolution (mass spectrometry)In mass spectrometry, resolution is a measure of the ability to distinguish two peaks of slightly different mass-to-charge ratios ΔM, in a mass spectrum. There are two different definitions of resolution and resolving power in mass spectrometry. The IUPAC definition for resolution in mass spectrometry is Where a larger resolution indicates a better separation of peaks. This definition is used in a number of mass spectrometry texts. This use is also implied by the term "high-resolution mass spectrometry.
ProtéomiqueLa protéomique désigne la science qui étudie les protéomes, c'est-à-dire l'ensemble des protéines d'une cellule, d'un organite, d'un tissu, d'un organe ou d'un organisme à un moment donné et sous des conditions données. Dans la pratique, la protéomique s'attache à identifier de manière globale les protéines extraites d'une culture cellulaire, d'un tissu ou d'un fluide biologique, leur localisation dans les compartiments cellulaires, leurs éventuelles modifications post-traductionnelles ainsi que leur quantité.
Énergie d'ionisationthumb|right|600px|Graphique des premières énergies d'ionisation en eV, en fonction du numéro atomique. L'énergie d'ionisation augmente graduellement des métaux alcalins jusqu'aux gaz nobles. Et dans une colonne donnée du tableau périodique, l'énergie d'ionisation diminue du premier rang jusqu'au dernier, à cause de la distance croissante du noyau jusqu'à la couche des électrons de valence.