Elecktroid features custom track lengths and step trigger probability controls opening the door to a world of non-repetitive poly-rhythmic beats. The new rhythm oriented step sequencer brings Elecktroid to life right inside your DAW. Elecktroid can velocity cross-fade between 2 samples per pad and accepts WAV, AIFF and CAF format files. Refresh and re-animate your existing collection with the pitch envelope, modulation, distortion, filter and graphic loop editing capabilities. Load up your favourite samples via the simple drag and drop interface. The backbone of Elecktroid is a high quality low CPU sample playback engine. The synthesis algorithms can be used as the basis of an entire rhythm track on their own or layered with samples to add weight, depth and character to your existing sound sets and rhythms. The drum synths are 100% algorithmic and utilise high quality DSP code for a deep, powerful and punchy sound. Pulsing away deep inside Elecktroid you'll find 4 of our exclusive drum synthesis models: BassDrum, WoodDrum, HiHat and Snare. Combine the depth and power of drum synthesis with your existing sample collections and sync both to a brand new rhythm oriented step sequencer with more than a few tricks up its digital sleeves. doi: 10.1021/ja960548z.The main appeal is the ability to set the step length for each track / instrument.Įlecktroid effortlessly blends synthesis and sample playback in a single integrated package. "Electrons on the surface of 2D materials: from layered electrides to 2D electrenes". Journal of the American Chemical Society. "Experimental Demonstration of an Electride as a 2D Material". "A stable compound of helium and sodium at high pressure". Zhou, Xiang-Feng Dronskowski, Richard Deringer, Volker L. ^ Wang, Hui-Tian Boldyrev, Alexander I."Optical properties of dense lithium in electride phases by first-principles calculations". "Crystal Structures of Dense Lithium: A Metal-Semiconductor-Metal Transition" (PDF). "Sodium: A Charge-Transfer Insulator at High Pressures". "Potassium under Pressure: A Pseudobinary Ionic Compound". "Non-classical divalent lanthanide complexes". The Chemistry of the Actinide and Transactinide Elements (PDF). : CS1 maint: multiple names: authors list ( link). "An electride with a large six-electron ring". "Room Temperature-Stable Electride as a Synthetic Organic Reagent: Application to Pinacol Coupling Reaction in Aqueous Media". "Inorganic Chemistry" Academic Press: San Diego, 2001. The first example was Ca 2N, in which the charge (+4) of two calcium ions is balanced by the charge of a nitride ion (-3) in the ion layer plus a charge (-1) in the electron layer. Layered electrides or electrenes are single-layer materials consisting of alternating atomically thin two-dimensional layers of electrons and ionized atoms. A sodium compound called disodium helide has been created under 113 gigapascals (1.12 × 10 ^ 6 atm) of pressure. Electride phases are typically semiconducting or have very low conductivity, usually with a complex optical response. The electride is identified by a maximum in the electron localization function, which distinguishes the electride from pressure-induced metallization. Here the isolated electron is stabilized by efficient packing, which reduces enthalpy under external pressure. Theoretical evidence supports electride behaviour in insulating high-pressure forms of potassium, sodium, and lithium. An electride, +e −, is formed as a reaction intermediate. This conversion is catalyzed by various metals. If not evaporated, such solutions slowly lose their colour as the electrons reduce ammonia:Ģ +e − → 2 NaNH 2 + 10NH 3 + H 2 Evaporation of these blue solutions affords a mirror of Na metal. Solutions of electride salts are powerful reducing agents, as demonstrated by their use in the Birch reduction. Similarly, CeIĢ are all electride salts with a tricationic metal ion. ThI 2 and ThI 3 have also been reported to be electride compounds. Properties of these salts have been analyzed. Electrides are paramagnetic, and are Mott insulators. In these salts, the electron is delocalized between the cations. Most solid electride salts decompose above 240 K, although 4+(e −) 4 is stable at room temperature. Evaporation of these solutions yields a blue-black paramagnetic solid with the formula +e −. The cation + is an octahedral coordination complex.Īddition of a complexant like crown ether or -cryptand to a solution of +e − affords +e − or +e −. In the case of sodium, these blue solutions consist of + and solvated electrons: Solutions of alkali metals in ammonia are electride salts. An electride is an ionic compound in which an electron is the anion.
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