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Thin-Wafer Solar Cells
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The high cost of crystalline silicon wafers led the semiconductor industry to look for cheaper ways and materials to make solar cells The most commonly used materials are amorphous silicon or polycrystalline materials (eg, cadmium telluride, gallium) These materials strongly absorb light and are about 1 micron thick, so production costs drop
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Alternative and Renewable Energies 207
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These thin wafers allow large area deposition (up to 1 meter) and high-volume manufacturing Thin-film semiconductor layers are deposited onto coated glass or stainless-steel sheets Intricate thin-film methods have taken about 20 years to get from initial research to prototype manufacturing
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Staebler-Wronski Effect
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Amorphous silicon is the best thin-film technology with a single sequence of layers, but output drops (15% to 35% loss) when exposed to the sun Not a good thing for solar cells! Solar cell degradation is called the Staebler-Wronski effect It describes how the best stability uses the thinnest layers to increase the electric field strength across the material, but reduces light absorption and cell efficiency The best thin-film cells are low cost, laminated for weather resistance, and have high stable efficiencies and yields
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Electrochemical Solar Cells
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While crystalline and thin-film solar cells have solid-state light-absorbing layers, electrochemical solar cells use a dye sensitizer to absorb light and produce electron pairs in a nanocrystalline titanium dioxide semiconductor layer Although cheaper, companies ability to scale up electrochemical PV cell manufacturing will be proven over time
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Passive Solar
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Buildings designed for passive solar and day lighting use design features like large southfacing windows and construction materials to absorb and slowly release the sun s heat No mechanical processes are used in passive solar heating Incorporating passive solar designs can reduce heating bills as much as 50% Passive solar designs can also provide cooling through natural ventilation
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Off the Grid
More and more PV installations on homes and buildings are being connected to the electricity grid Demand is encouraged by governmental programs (Japan and Germany) and incentive pricing and electricity providers (Switzerland and United States) The main push comes from individuals and/or companies who want to get electricity from a clean, nonpolluting, renewable source and agree to pay extra for the option An electricity grid is an electricity transmission and distribution system, usually supplying power across a wide geographical region An individual PV system, connected to a larger supply grid, can supply electricity to a home or building Any extra electricity can be sent to the grid Batteries are not needed since the grid is able to meet any extra demand However, for a home to be independent of the grid, battery storage is needed for power at night Grid-connected systems are independent power systems joined to a regional grid that draw on the grid s reserve capacity when they need it and give electricity back during times of extra production One disadvantage of solar power is the amount of land needed For enough solar panels to supply the electricity needs of an urban area, lots of acreage is needed
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Common Uses
Solar home systems are made up of a PV panel, rechargeable battery to store the energy captured during daylight hours, regulator, and necessary wiring and switches Solar PV modules can be added to a pitched roof above the existing roof tiles, or tiles can be replaced by specially designed PV roof tiles or roof-tiling systems Cost-effective PV systems are also great for beach or vacation homes, or remote cabins without access to an electricity grid Solar energy power is highly reliable and needs little maintenance, making it a great choice for remote sunny locations Polar research stations are a good example Central power applications use solar energy in the same way a traditional utility company operates a major power station There are hub locations from which power is sent out to meet demand Power sent out in small amounts, usually near the point of electrical usage, is known as distributed power
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