[1] 吴奉炳, 张大伟, WU Feng-bing, ZHANG Da-wei. 太阳能电池中微纳陷光光栅结构 [J]. 激光杂志 2010.doi:10.3969/j.issn.0253-2743.2010.05.009 [2] 沈辉, 柳锡运, Shen Hui, Liu Xi-yun. 太阳能电池单晶硅表面织构化正交试验 [J]. 华南理工大学学报(自然科学版) 2006.doi:10.3321/j.issn:1000-565X.2006.10.003 [3] 薛俊明, 黄宇, 熊强, 马铁华, 孙建, 赵颖, 耿新华, Xue Junming, Huang Yu, Xiong Qiang, Ma Tiehua, Sun Jian, Zhao Ying, Geng Xinhua. ZnO:Al绒面透明导电薄膜的制备及分析 [J]. 太阳能学报 2007.doi:10.3321/j.issn:0254-0096.2007.07.003 [4] 彭英才, 于威. 纳米太阳电池技术 [M]. {H}北京:化学工业出版社 2010. [5] HAYNOS J, ALLISON J, ARNDT R. The comsat non-reflective silicon solar cell:a second generation improved cell [A]. Hamburg 1974. [6] GREEN M A, BLAKERS A W, OSTERWALD C R. Characterization of high-efficiency silicon solar cells [J]. {H}Journal of Applied Physics 1985, 58(11). [7] ZHAO J H, WANG A H, GREEN M A. 24.5% Efficiency silicon PERT cells on MCZ substrates and 24.7% efficiency PERL cells on FZ substrates [J]. Prog Photovolt:Res Appl 1999, 7(6). [8] Vazsonyi E., Einhaus R., Van Kerschaver E., Said K., Poortmans J., Szlufcik J., Nijs J., De Clercq K.. Improved anisotropic etching process for industrial texturing of silicon solar cells [J]. Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion 1999, 2(2). [9] Marrero N, Gonzalez-Diaz B, Guerrero-Lemus R, Borchert D, Hernandez-Rodriguez C. Optimization of sodium carbonate texturization on large-area crystalline silicon solar cells [J]. Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion 2007, 20(20). [10] B. Vallejo, M. Gonzalez-Manas, J. Martinez-Lopez, M.A. Caballero. On the texturization of monocrystalline silicon with sodium carbonate solutions [J]. Solar Energy 2007, 5(5). [11] Xi ZQ., Yang DR., Que DL.. Texturization of monocrystalline silicon with tribasic sodium phosphate [J]. Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion 2003, 3(3). [12] QU W Y, ZHANG Y, LI H L. Texturization of mono-crystalline silicon solar cells in TMAH without the addition of surfactant [J]. J Semicond 2010, 31(10). [13] DOBRAZNSKI L A, DRYGAA A. Surface texturing of multicrystalline silicon solar cells [J]. Journal of Achievements in Materials and Manufacturing Engineering 2008, 31(1). [14] 王学孟, 赵汝强, 沈辉, 梁宗存. 用于太阳能电池的多晶硅激光表面织构化研究 [J]. 2010.doi:10.3788/lop47.011401 [15] Malcolm Abbott, Jeffrey Cotter. Optical and Electrical Properties of Laser Texturing for High-efficiency Solar Cells [J]. Progress in photovoltaics 2006, 3(3). [16] MARCKMANN C, TOLLE R, SPIEGEL M. Mechanically V-textured low cost multicrystalline silicon solar cells with a novel printing metallization [A]. 1997. [17] WILLEKE G, NUSSBAUMER H, BENDER H. A simple and effective light trapping technique for polycrystalline silicon solar cells [J]. Sol Energy Mater Sol Cell 1992, 26(4). [18] HU L Q, ZHAO L, TAN Z L. The Application of reactive ion etching(RIE)in texturing of multicrystalline silicon wafers for solar cells [J]. {H}ECS Transactions 2010, 27(1). [19] Nositschka WA., Voigt O., Manshanden P., Kurz H.. Texturisation of multicrystalline silicon solar cells by RIE and plasma etching [J]. Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion 2003, 2(2). [20] Reactive ion etching (RIE) technique for application in crystalline silicon solar cells [J]. Solar Energy 2010, 4(4). [21] Yoo, J., Yu, G., Yi, J.. Large-area multicrystalline silicon solar cell fabrication using reactive ion etching (RIE) [J]. Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion 2011, 1(1). [22] D.H. Macdonald, A. Cuevas, M.J. Kerr, C. Samundsett, D. Ruby, S. Winderbaum, A. Leo. Texturing industrial multicrystalline silicon solar cells [J]. Solar Energy 2004, 1/3(1/3). [23] Zhao JH., Green MA., Ferrazza F., Wang AH.. 19.8 [J]. Applied physics letters 1998, 14(14). [24] Imogen M. Pryce, Daniel D. Koleske, Arthur J. Fischer, Harry A. Atwater. Plasmonic nanoparticle enhanced photocurrent in GaN/InGaN/GaN quantum well solar cells [J]. Applied physics letters 2010, 15(15). [25] P. Matheu, S. H. Lim, D. Derkacs, C. McPheeters, E. T. Yu. Metal and dielectric nanoparticle scattering for improved optical absorption in photovoltaic devices [J]. Applied physics letters 2008, 11(11). [26] Morfa AJ, Rowlen KL, Reilly TH, Romero MJ, van de Lagemaat J. Plasmon-enhanced solar energy conversion in organic bulk heterojunction photovoltaics [J]. Applied physics letters 2008, 1(1). [27] H. L. Gao, X. W. Zhang, Z. G. Yin, H. R. Tan, S. G. Zhang, J. H. Meng, X. Liu. Plasmon enhanced polymer solar cells by spin-coating Au nanoparticles on indium-tin-oxide substrate [J]. Applied physics letters 2012, 13(13). [28] Yu Jin, Jing Feng, Xu-Lin Zhang, Ming Xu, Yan-Gang Bi, Qi-Dai Chen, Hai-Yu Wang, Hong-Bo Sun. Surface-plasmon enhanced absorption in organic solar cells by employing a periodically corrugated metallic electrode [J]. Applied physics letters 2012, 16(16). [29] S. Dominguez, J. Bravo, O. Garcia, M. Ezquer, M. J. Rodriguez, A. R. Lagunas, J. Perez-Conde. Optimization of 1D photonic crystals to minimize the reflectance of silicon solar cells [J]. Photonics and Nanostructures: Fundamentals and Applications 2012, 1(1). [30] I. Prieto, B. Galiana, P. A. Postigo, C. Algora, L. J. Martinez, I. Rey-Stolle. Enhanced quantum efficiency of Ge solar cells by a two-dimensional photonic crystal nanostructured surface [J]. Applied Physics Letters 2009, 19(19). [31] Guillaume Gomard, Emmanuel Drouard, Xavier Letartre, Xianqin Meng, Anne Kaminski, Alain Fave, Mustapha Lemiti, Enric Garcia-Caurel, Christian Seassal. Two-dimensional photonic crystal for absorption enhancement in hydrogenated amorphous silicon thin film solar cells [J]. Journal of Applied Physics 2010, 12(12). [32] Silvia Colodrero, Amparo Fomeli, Carmen Lopez-Lopez, Laia Pelleja, Hemdn Miguez, Emilio Palomares. Efficient Transparent Thin Dye Solar Cells Based on Highly Porous 1D Photonic Crystals [J]. Advanced functional materials 2012, 6(6). [33] Zhu, J., Hsu, C.-M., Yu, Z., Fan, S., Cui, Y.. Nanodome solar cells with efficient light management and self-cleaning [J]. Nano letters 2010, 6(6). [34] 崔敏, 邓金祥, 张维佳, 段苹, Cui Min, Deng Jinxiang, Zhang Weiiia, Duan Ping. 直流反应磁控溅射法制备太阳电池用ITO透明导电膜 [J]. 真空科学与技术学报 2012.doi:10.3969/j.issn.1672-7126.2012.08.20 [35] Erjing, Z., Weijia, Z., Jun, L., Dongjie, Y., Jacques, H.J., Jing, Z.. Preparation of ITO thin films applied in nanocrystalline silicon solar cells [J]. Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology 2011, 3(3). [36] Suk In Noh, Hyo-Jin Ahn, Doh-Hyung Riu. Photovoltaic property dependence of dye-sensitized solar cells on sheet resistance of FTO substrate deposited via spray pyrolysis [J]. CERAMICS INTERNATIONAL 2012, 5(5). [37] Ziyang Hu, Jianjun Zhang, Zhihong Hao, Qiuyan Hao, Xinhua Geng, Ying Zhao. Highly efficient organic photovoltaic devices using F-doped SnO_(2) anodes [J]. Applied physics letters 2011, 12(12). [38] Woo-Jin Choi, Dong-Joo Kwak, Cha-Soo Park, Youl-Moon Sung. Characterization of Transparent Conductive ITO, ITiO, and FTO Films for Application in Photoelectrochemical Cells [J]. Journal of nanoscience and nanotechnology 2012, 4(4). [39] Tark, SJ, Kang, MG, Park, S, Jang, JH, Lee, JC, Kim, WM, Lee, JS, Kim, D. Development of surface-textured hydrogenated ZnO:Al thin-films for mu c-Si solar cells [J]. Current applied physics: the official journal of the Korean Physical Society 2009, 6(6). [40] WANG Y F, ZHANG X D, BAI L S. Effective light trapping in thin film silicon solar cells from textured AI doped ZnO substrates with broad surface feature distributions [J]. {H}Applied Physics Letters 2012, 100(26). [41] Zhu, H., Hüpkes, J., Bunte, E., Owen, J., Huang, S.M.. Novel etching method on high rate ZnO:Al thin films reactively sputtered from dual tube metallic targets for silicon-based solar cells [J]. Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion 2011, 3(3). [42] He, L., Lai, D., Wang, H., Jiang, C., Rusli. High-efficiency Si/polymer hybrid solar cells based on synergistic surface texturing of Si nanowires on pyramids [J]. Small 2012, 11(11). |