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A solar cell (also called a photovoltaic cell) is and electrical device that converts the energy of light directly into electricity by the photovoltaic effect. It is a form of photoelectric cell, defined as a device whose electrical characteristics—e.g. current, voltage, or resistance—vary when exposed to light. Cells can be described as photovoltaic even when the light source is not necessarily sunlight (lamplight, artificial light, etc.) Photovoltaic cells are used as a photodetector (for example infrared detectors), detecting light or other electromagnetic radiation near the visible range, or measuring light intensity. By far, the most prevalent bulk material for solar cells is crystalline silicon (abbreviated as a group as c-Si), also known as "solar grade silicon". Bulk silicon is separated into multiple categories according to crystallinity and crystal size in the resulting ingot, ribbon. Topics like silicon photovoltaic,Polysilicon mono-crystalline, Quasi-mono silicon shall be discussed.
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Scope and importance
Monocrystalline silicon (c-Si)—often made using the Czochralski process. Single-crystal wafer cells tend to be expensive, and because they are cut from cylindrical ingots, do not completely cover a square solar cell module without a substantial waste of refined silicon. Hence most c-Si panels have uncovered gaps at their four corners.
Polycrystalline silicon, or multicrystalline silicon, (poly-Si or mc-Si)—made from cast square ingots—large blocks of molten silicon carefully cooled and solidified. Poly-Si cells are less expensive and less efficient than single monos. United States Department of Energy data showmorepolycrystallinethanmonocrystallinesales. Ribbon silicon is a type of polycrystalline silicon—it is formed by drawing flat thin films from molten silicon and results in a polycrystalline structure. These cells have lower efficiencies and costs than poly-Si due to a great reduction in silicon waste, as this approach does not require sawing from ingots.
The report firstly introduced Thin Film Amorphous Silicon Solar Cell basic information including Thin Film Amorphous Silicon Solar Cell definition, classification, application and industry chain overview; Thin Film Amorphous Silicon Solar Cell industry policy and plan, Thin Film Amorphous Silicon Solar Cell product specification, manufacturing process, cost structure etc. Then we deeply analyzed the world's main region market conditions that including the product price, profit, capacity, production, capacity utilization, supply, demand and industry growth rate etc.
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This page was last updated on 12th Sep, 2015
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