DOE Solar Energy Technologies Program

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Concentrators” (plenary presentation and paper), 20th European PV Solar Energy Conference and Exhibition, Barcelona, Spain, June 2005. M. Symko-Davies, “Status of High Performance PV: Polycrystalline Thin-Film Tandems,” 31st IEEE PVSC, Florida, 2005. 6. University and Industry Partners The following organizations partnered in the project’s research activities during FY 2005. Organization/ Principal Investigator Georgia Institute of T echnology Ajeet Rohatgi University of Delaware Bill Shafarman University of Toledo Alvin Compaan University of Florida Oscar Crisalle University of Oregon David Cohen Oregon State University Douglas Keszler Spectrolab, Inc. Raed Sherif Amonix, Inc. Vahan Garbushian California Institute of T echnology Harry Atwater JX Crystals Lew Fraas University of Delaware Christiana Honsberg Ohio State University Steve Ringel Location/e-mail Description/Title of Research Activity Polycrystalline Thin-Film Tandems FY 2005 Cost Share ($K) Atlanta, GA Ajeet.Rohatgi@ece.gatech .edu Newark, DE wns@udel.edu Toledo, OH adc@physics.utoledo.edu Gainesville, FL crisalle@che.ufl.edu Eugene, OR dcohen@darkwing. uoregon.com Corvallis, OR Douglas.keszler@orst.edu Thin-Film Si Bottom Cells for Tandem Device Structures High-Performance PV-Polycrystalline Thin-Film Tandem Cells Sputtered II-VI Alloys and Structures for Tandem PV Identification of Critical Paths in the Manufacturing of Low-Cost High- Efficiency CGS/CIS Tandems Identifying the Electronic Properties Relevant to Improving the Performance of High Band-Gap Copper-Based I-III- VI2 Chalcopyrite Thin Film PV Devices Novel Materials Development for Polycrystalline Thin-Film Solar Cells ($K) 130 20* 0 211 0 235 20* 0 50 0 104 0 14* 160 0 III-V Multijunction Concentrators Sylmar, CA rsherif@spectrolab.com Torrence, CA drvahan@earthlink.net Pasadena, CA haa@daedalus.caltech. edu Issaquah, WA lfraas@jxcrystals.com Newark, DE honsberg@ece.gatech.edu Colombus, OH ringel@ee.eng.ohio- state.edu Ultra-High-Efficiency Multijunction Cell and Receiver Module Design and Demonstration of a Greater than 33% Efficiency High-Concentration Module Using 40% III-V Multijunction Devices Four-Junction Solar Cell with 40% Target efficiency Fabricated by Wafer Bonding and Layer Transfer Toward 40% Efficient Mechanically Stacked III-V Terrestrial Concentrator Cells Novel High Efficiency PV Devices Based on the III-N Material System Optimized III-V Multijunction Concentrator Solar Cells on Patterned Si and Ge Substrates 31 207 50* 232 48* 40 50 207 0 150 12* 0 Photovoltaic R&D Fundamental Research 55 16* 0 90 0

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