Homojunction Solar Cells
Author:
Publisher
Elsevier
Reference20 articles.
1. R.S. Ohl, U.S. Patent 2,402,662 (1941).
2. A new silicon p–n junction photocell for converting solar radiation into electrical power;Chapin;J. Appl. Phys.,1954
3. Photovoltaic effect in GaAs p–n junctions and solar energy conversion;Jenny;Phys. Rev.,1956
4. Simplified fabrication of GaAs homojunction solar cells with increased conversion efficiencies
5. An isothermal etchback‐regrowth method for high‐efficiency Ga1−xAlxAs‐GaAs solar cells
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