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Manufacturing Method Holds Promise for PV

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CHAMPAIGN, Ill., May 20, 2010 — Thanks to a new semiconductor manufacturing method pioneered at the University of Illinois, the future of solar energy just got brighter. Although silicon is the industry standard semiconductor in most electronic devices, including the photovoltaic cells that solar panels use to convert sunlight into energy, it is hardly the most efficient material available. For example, the semiconductor gallium arsenide and related compound semiconductors offer nearly twice the efficiency as silicon in solar devices, yet they are rarely used in utility-scale applications because of their high...Read full article

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    Published: May 2010
    Glossary
    gallium arsenide
    Gallium arsenide (GaAs) is a compound semiconductor material composed of gallium (Ga) and arsenic (As). It belongs to the III-V group of semiconductors and has a zincblende crystal structure. GaAs is widely used in various electronic and optoelectronic devices due to its unique properties. Direct bandgap: GaAs has a direct bandgap, which allows for efficient absorption and emission of photons. This property makes it suitable for optoelectronic applications such as light-emitting diodes...
    AmericasBasic Scienceconvert sunlightDepartment of EnergyenergyEtienne Menardgallium arsenidegreen photonicsHoon-Sik KinIk Su ChunindustrialInhwa JungJames ColemanJohn RogersJongseung Yoonlight sensorsMatthew MeitlNational Science FoundationphotovoltaicsResearch & Technologysemiconductor manufacturingsemiconductor-coated waferSemprius Inc.Sensors & Detectorssilicon solar cellssolar cellsSolar Energysolar panelsSungjin Jothin-film electronicsUngyu PaikUniversity of IllinoisXiuling Li

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