Solar cell efficiency tables (version 18)
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Martin A. Green | Wilhelm Warta | D. L. King | David L. King | Keith Emery | Sanekazu Igari | W. Warta | M. Green | K. Emery | S. Igari | D. King
[1] G. F. Virshup,et al. A 31%-efficient GaAs/silicon mechanically stacked, multijunction concentrator solar cell , 1988, Conference Record of the Twentieth IEEE Photovoltaic Specialists Conference.
[2] D. Flood,et al. A high-performance photovoltaic concentrator array: The mini-dome Fresnel lens concentrator with 30% efficient GaAs/GaSb tandem cells , 1991, The Conference Record of the Twenty-Second IEEE Photovoltaic Specialists Conference - 1991.
[3] Daniel J. Friedman,et al. Accelerated publication 30.2% efficient GaInP/GaAs monolithic two‐terminal tandem concentrator cell , 1995 .
[4] M. Green,et al. 24·5% Efficiency silicon PERT cells on MCZ substrates and 24·7% efficiency PERL cells on FZ substrates , 1999 .
[5] D. L. King,et al. World's first 15%-efficient multicrystalline silicon modules , 1994, Proceedings of 1994 IEEE 1st World Conference on Photovoltaic Energy Conversion - WCPEC (A Joint Conference of PVSC, PVSEC and PSEC).
[6] Rommel Noufi,et al. Progress toward 20% efficiency in Cu(In,Ga)Se2 polycrystalline thin‐film solar cells , 1999 .
[7] Ralf B. Bergmann,et al. Advances in monocrystalline Si thin film solar cells by layer transfer , 2002 .
[8] Keith Emery,et al. High-efficiency heteroepitaxial InP solar cells , 1991, The Conference Record of the Twenty-Second IEEE Photovoltaic Specialists Conference - 1991.
[9] D. L. King,et al. Solar cell efficiency tables (version 22) , 1996, Renewable Energy.
[10] H. Field,et al. 18.2% (AM1.5) efficient GaAs solar cell on optical-grade polycrystalline Ge substrate , 1996, Conference Record of the Twenty Fifth IEEE Photovoltaic Specialists Conference - 1996.
[11] T. Machida,et al. Polycrystalline silicon solar cells with V-grooved surface , 1994 .
[12] Y. Hishikawa,et al. Effects of the i-layer properties and impurity on the performance of a-Si solar cells , 1994 .
[13] S. Guha,et al. Recent progress in amorphous silicon alloy leading to 13% stable cell efficiency , 1997, Conference Record of the Twenty Sixth IEEE Photovoltaic Specialists Conference - 1997.
[14] V. Haven,et al. High-efficiency concentrator cells from GaAs on Si , 1991, The Conference Record of the Twenty-Second IEEE Photovoltaic Specialists Conference - 1991.
[15] C. J. Keavney,et al. Emitter structures in MOCVD InP solar cells , 1990, IEEE Conference on Photovoltaic Specialists.
[16] M. Green,et al. 20 000 PERL silicon cells for the ‘1996 World Solar Challenge’ solar car race , 1997 .
[17] Carl R. Osterwald,et al. Advanced high-efficiency concentrator tandem solar cells , 1991, The Conference Record of the Twenty-Second IEEE Photovoltaic Specialists Conference - 1991.
[18] Kenji Yamamoto,et al. Thin-film poly-Si solar cells on glass substrate fabricated at low temperature , 1999 .
[19] Martin A. Green,et al. Solar cell efficiency tables (version 17) , 2001 .
[20] K. Emery,et al. Triple-junction solar cell efficiencies above 32%: the promise and challenges of their application in high-conceniration-ratio PV systems , 2000, Conference Record of the Twenty-Eighth IEEE Photovoltaic Specialists Conference - 2000 (Cat. No.00CH37036).
[21] Subhendu Guha,et al. Progress in triple-junction amorphous silicon-based alloy solar cells and modules using hydrogen dilution , 1994, Proceedings of 1994 IEEE 1st World Conference on Photovoltaic Energy Conversion - WCPEC (A Joint Conference of PVSC, PVSEC and PSEC).
[22] V. S. Sundaram,et al. Over 35% efficient GaAs/GaSb stacked concentrator cell assemblies for terrestrial applications , 1990, IEEE Conference on Photovoltaic Specialists.
[23] M. Green,et al. 19.8% efficient “honeycomb” textured multicrystalline and 24.4% monocrystalline silicon solar cells , 1998 .
[24] Martin A. Green,et al. Large area, concentrator buried contact solar cells , 1995 .