English: This experimental solar cell uses eight layers of colloidally-deposited quantum dots to efficiently capture a wide range of the solar spectrum. The metal dots on the front surfaces are the electrodes connected to each layer, two each for a total of sixteen. The "starburst" patterning of the cell material is due to the spin-casting technique.
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Lukasz Brzozowski, Director, Photovoltaics Research Program, Department of Electrical and Computer Engineering, University of Toronto
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2011-01-25 21:08 Maury Markowitz 1036×857× (236057 bytes) {{Information |Description = This experimental solar cell uses eight layers of colloidally-deposited quantum dots to efficiently capture a wide range of |Source = Luke Brzozowski, Director, Photovoltaics Research Program, Department of Elect
{{Information |Description={{en|This experimental solar cell uses eight layers of colloidally-deposited quantum dots to efficiently capture a wide range of the solar spectrum. The metal dots on the front surfaces are the electrodes connected to each la...