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View the Table of Contents - JX Crystals

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d. Tomorrow’s lower cost higher efficiency solar concentratorse. Residential complete energy systemsChapter 7: The 35% efficient solar cell 64a. History <strong>of</strong> multijunction or multicolor solar cellsb. Epitaxy and monolithic multijunction cellsc. New infrared sensitive GaSb cell and <strong>the</strong> 35% efficient GaAs/GaSbstacked celld. Different designs for different applicationse. NREL confirms a 35% efficiency for <strong>the</strong> InGaP/GaAs/Ge cellChapter 8: Infrared solar cells andcombined solar lighting and electricity for buildings 80a. Concept <strong>of</strong> concentrated and piped sunlight for indoor illuminationb. Oak Ridge National Lab coalitionc. ORNL Concept and Economic Potentiald. ORNL demonstration prototypee. Infrared PV array prototypeChapter 9: ThermoPhotoVoltaic (TPV) Furnace-Generatorfor <strong>the</strong> Home Using Infrared Sensitive PV Cells 88a. TPV Concept and Midnight Sun TPV Heating Stoveb. New Efficient Cylindrical TPV Generator Design and Developmentc. Fuel savings, Energy efficiency, and Potential system costd. Potential GaSb cell and circuit costsChapter 10: Cost <strong>of</strong> solar electricity today and tomorrow 97a. Cost <strong>of</strong> solar electricity todayb. Path from innovation to high-volume commercial productionc. Cost <strong>of</strong> solar electricity tomorrowd. The importance <strong>of</strong> higher efficiency for future cost reductionChapter 11: Conclusions –The investment problem and top down commitment 105a. Renewable energy can be viableb. There is an energy problem todayc. Private industry will not and can not do it aloned. We need top level real commitmentBibliography 109iv

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