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由于原材料蕴藏量非常丰富以及对环境无毒友好的特点,硅基太阳电池不仅在当前,而且在今后都将是光伏太阳电池的主流.传统晶体硅电池光电转换原理决定了其转换效率不可能在短期内有较大提高.基于量子限制原理的纳米结构材料具有独特的性能,能够实现全新结构的超高效率的光伏太阳电池.文章介绍了硅基太阳电池研究方面的一些最新研究进展,并指出了未来一些可能的发展方向.

参考文献

[1] 斯勒夫 .2008年.全球太阳能电池产量7.9GW,增幅 85%[J].光伏信息,2009,50:19-21.
[2] W.Shockley;H.J.Queisser.Detailed balance limit of efficiency of p-n junction solar cells[J].Journal of Applied Physics,1961(32):510-515.
[3] J.Zhao;A.Wang;M.A.Green.24.5% Efficiency Silicon PERT Cells on MCZ Substrates[J].Progress in Photovoltaics,1999(07):471-474.
[4] Martin Green;Keith Emery;Yoshihiro Hishikawa.Solar cell efficiency table[J].Progress in Photovotaics:Research and Applications,2009(17):85-94.
[5] 清水正文.太陽光発電技術の原状と今後は展开[J].シャ-プ技报,2005(93)
[6] M. Yamaguchi;Y. Ohshita;K. Arafune;H. Sai;M. Tachibana .Present status and future of crystalline silicon solar cells in Japan[J].Solar Energy,2006(1):104-110.
[7] M.A. Green .Photovoltaics: technology overview[J].Energy policy,2000(14.November):989-998.
[8] J.Yang;B.Yan;S.Guha .[J].Thin Solid Films,2005,487:162.
[9] Martin Green.Third generation concepts for photovoltaics[A].Osaka,Japan,2003
[10] Tetsuo Soga.Nanostructured Materials for Solar Energy Conversion[M].北京:科学出版社,2006:485-511.
[11] 彭华,周之斌,崔容强,叶庆好,庞乾骏,陈鸣波,赵亮.渐变带隙结构在Ⅲ-Ⅴ族太阳电池中的应用[J].半导体学报,2005(05):958-964.
[12] 同 10,539~564[Q].
[13] D. Hariskos;S. Spiering;M. Powalla .Buffer layers in Cu(In,Ga)Se_2 solar cells and modules[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2005(6):99-109.
[14] Robert Ross .Efficiency of hot-carrier solar energy converters[J].Journal of Applied Physics,1982,53(05):3814-3818.
[15] Christiana Honsberg;Allen.Barnett.Paths to ultra-high efficiency(》 50%)photovoltaic device[A].,2005:453-455.
[16] Christiana Honsberg;Allen Barnet;Douglas Kirkpatrick.Nanostructured solar cells for high efficiency photovoltaics[J].IEEE,2006:2565-2568.
[17] 何宇亮,褚一鸣,王中怀,刘湘娜,白春礼.纳米硅薄膜界面结构的微观特征[J].半导体学报,1994(01):71.
[18] 王忠怀;戴长春;张平城 等.纳米硅薄膜的扫描隧道显微镜研究[J].科学通报,1993,14(21):9-14.
[19] 沈文忠.硅纳米结构在太阳电池上的应用[J].中国太阳能光伏,2009(05):28-30.
[20] N.Daukes;R.Raffaeile;K.Barnham.Minimum performance criteria for quantum well based junctions in multi-junction solar cells[A].,2005:86-89.
[21] Smar Sinharoy;C.King;Sheila Bailey.InAs quantum dot development for enhanced InGaAs space solar cells[A].,2005:94-97.
[22] Pivac B;Dubcek P;Capan I et al.Nano Si superlattices for the next neneration solar cells[J].Journal of Nanoscience and Nanotechnology,2009,9(06):3853-3857.
[23] Argyrios C. Varonides .High Efficiency Amorphous Silicon Superlattice Solar cells[J].WSEAS Transactions on Electronics,2006(5):281-287.
[24] Atul Madhavan;Debju Ghosh;Max noack.Influence of amorphous layers on performance of nanocrystalline/amorphous superlattice Si Solar cell,0989-A18-02[A].
[25] Yasuyoshi Kurokawa;Shinsuke Miyajima;Akira Yamada.Size-controlled silicon quantum dots superlattice for thin-film solar cell applications,1101-KK12-01[A].
[26] Green et al.Project:Nanostructured Silicon-Based Tandem Solar Cells:GCEP Technical Report[R].,2006.
[27] Gavin Conibeer;Martin Green;Richard Corkish;Young Cho;Eun-Chel Cho;Chu-Wei Jiang;Thipwan Fangsuwannarak;Edwin Pink;Yidan Huang;Tom Puzzer;Thorsten Trupke;Bryce Richards;Avi Shalav;Kuo-lung Lin .Silicon nanostructures for third generation photovoltaic solar cells[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2006(7):654-662.
[28] Chu-Wei Jiang;Martin Green .Silicon quantum dot superlattice:Modeling of energy bands,densities of states,and mobilities for silicon tandem solar cell applications[J].Journal of Applied Physics,2006,99(11):114902.
[29] Takeda, Yasuhiko;Ito, Tadashi;Suzuki, Ryo;Motohiro, Tomoyoshi;Shrestha, Santosh;Conibeer, Gavin .Impact ionization and Auger recombination at high carrier temperature[J].Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion,2009(6/7):797-802.
[30] P. Wurfel;A. S. Brown;T. E. Humphrey .Particle Conservation in the Hot-carrier Solar Cell[J].Progress in photovoltaics,2005(4):277-285.
[31] Conibeer, Gavin;Ekins-Daukes, Nicholas;Guillemoles, Jean-Francois;Konig, Dirk;Cho, Eun-Chel;Jiang, Chu-Wei;Shrestha, Santosh;Green, Martin .Progress on hot carrier cells[J].Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion,2009(6/7):713-719.
[32] Gavin Conibeer .Third-generation photovoltaics[J].Materials Today,2007(11):42-50.
[33] J. Sinkkonen;J. Ruokolainen;P. Uotila;A. Hovinen .Spatial collection efficiency of a solar cell[J].Applied physics letters,1995(2):206-208.
[34] Kittidachachan P;Markvart T;Bagnall DM;Greef R;Ensell GJ .A detailed study of p-n junction solar cells by means of collection efficiency[J].Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion,2007(2/3):160-166.
[35] P.Klemens .Anharmonic decay of optical phonons[J].Physiological Reviews,1966,148:845-848.
[36] Z.Kuznicki;P.Meyrueis;G.Sarrabayrouse et al.PV conversion of Energetic Photons of the solar spectrum:Photovoltaics for Solar Energy Systems Ⅱ[J].Proceedings of Spie,2008,7002:700204-701-10.
[37] Z.Kuznicki .Nonlinear collection efficiency of Si solar cells containing nanoscale Si-layered systems:Photovoltaics for Solar Energy Systems[J].Proceedings of Spie,2006,6197:61970A-611-11.
[38] Z.Kuznicki .Multistage PV conversion using nanostructured multi-interface Si Components:Experimental evidence:Photovohaics for Solar Energy Systems[J].Proceedings of Spie,2008,7002:70020Q-701-12.
[39] Z.Kuznicki .Optically Activate Si surface:Photovoltaics for Solar Energy Systems[J].Proceedings of Spie,2008,7002:70020R-7001-8.
[40] Z.Kuznicki .Low-energy generation in Nanostructured Si:Photovoltaics for Solar Energy Systems[J].Proceedings of Spie,2008,7002:70020S-7001-9.
[41] Z.Kuznicki .Enhanced absorption and quantum efficiency in locally modified single-crystal Si[J].Applied Physics Letters,2002,81(25):4853-4855.
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