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      Achievement of More Than 25% Conversion Efficiency With Crystalline Silicon Heterojunction Solar Cell

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          24.7% Record Efficiency HIT Solar Cell on Thin Silicon Wafer

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            High-efficiency Silicon Heterojunction Solar Cells: A Review

            Silicon heterojunction solar cells consist of thin amorphous silicon layers deposited on crystalline silicon wafers. This design enables energy conversion efficiencies above 20% at the industrial production level. The key feature of this technology is that the metal contacts, which are highly recombination active in traditional, diffused-junction cells, are electronically separated from the absorber by insertion of a wider bandgap layer. This enables the record open-circuit voltages typically associated with heterojunction devices without the need for expensive patterning techniques. This article reviews the salient points of this technology. First, we briefly elucidate device characteristics. This is followed by a discussion of each processing step, device operation, and device stability and industrial upscaling, including the fabrication of solar cells with energy-conversion efficiencies over 21%. Finally, future trends are pointed out.
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              Solar cell efficiency tables (version 43)

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                Author and article information

                Journal
                IEEE Journal of Photovoltaics
                IEEE J. Photovoltaics
                Institute of Electrical and Electronics Engineers (IEEE)
                2156-3381
                2156-3403
                November 2014
                November 2014
                : 4
                : 6
                : 1433-1435
                Article
                10.1109/JPHOTOV.2014.2352151
                32c8c367-8287-4024-b989-8fce4bf7ff0e
                © 2014
                History

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