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  • 太陽能電池
  • 周文利 胡松 林一歆
  • 2099字
  • 2021-10-22 17:12:12

參考文獻

[1]Boueke,A.,Kühn,R.,Fath,P.,et al.Latest results on semitransparent POWER silicon solar cells.Solar energy materials and solar cells.2001,65(1):549-553.

[2]Green,M.A.The path to 25%silicon solar cell efficiency:history of silicon cell evolution.Progress in Photovoltaics:Research and Applications.2009,17(3):183-189.

[3]Green,M.A.,Emery,K.,Hishikawa,Y.,et al.Solar cell efficiency tables(version 39).Progress in photovoltaics:research and applications.2011,20(1):12-20.

[4]Jiang,Y.W.,Tsai,M.W.,Ye,Y.H.,et al.Enhancement of thermal radiation in plasmonic thermal emitter by surface plasmon resonance.Nanotechnology.NANO 08.8th IEEE Conference on:IEEE,2008:104-107.

[5]Chen,Z.,Zhan,P.,Wang,Z.L.,et al.Two-and Three-Dimensional Ordered Structures of Hollow Silver Spheres Prepared by Colloidal Crystal Templating.Advanced Materials.2004,16(5):417-422.

[6]Heinzel,A.,Roemer,V.,Gombert,A.,et al.Radiation filters and emitters for the NIR based on penodically structured metal surfaces.Journal of Modern Optics.2000,47(13):2399-2419.

[7]Sai,H.,Kanamori,Y.Spectrally selective thermal radiators and absorbers with periodic microstructured surface for high-temperature applications.Microscale Thermophysical Engineering.2003,7(2):101-115.

[8]Narayanaswamy,A.,Chen,G.Thermal emission control with one-dimensional meta llodielectri c photonic crystals.Physical Review B.2004,70(12):125101-125104.

[9]Popov,E.,Bonod,N.,Enoch,S.Comparison of plasmon surface waves on shallow and deep metallic 1D and 2D gratings.Optics express.2007,15(7):4224-4237.

[10]Chen,Y.B.,Zhang,Z.M.Heavily doped silicon complex gratings as wavelength-selective absorbing surfaces.Journal of Physics D:Applied Physics.2008,41(9):095406.

[11]Chen,Y.B.,Tan,K.H.The profile optimization of periodic nano-structures for wavelength-selective thermophotovoltaic emitters.International Journal of Heat and Mass Transfer. 2010,53(23):5542-5551.

[12]Siegel,R.,Howell,J.R.Thermal radiation heat transfer.NASA STI/Recon Technical Report A.1992, 93:17522.

[13]韓茂華,梁新剛.球形粒子的近場輻射換熱研究.工程熱物理學報.2007,28(1):107-109.

[14]帥永,劉林華,王雁鳴,等.周期性微結構硅基表面輻射特性數值研究.工程熱物理學報.2009(012):2074-2076.

[15]Zhang,Z.M.Nano/microscale heat transfer.McGraw-Hill New York,2007.

[16]Basu,S.,Chen,Y.B.,Zhang,Z.M.Microscale radiation in thermophotovoltaic devices-A review.International Journal of Energy Research.2007,31(6-7):689-716.

[17]宣益民.地面目標與背景的紅外特征.北京:國防工業出版社,2004.

[18]韓玉閣,劉榮輝,宣益民.復雜地面背景紅外熱像模擬.南京理工大學學報(自然科學版).2007,4:021.

[19]邵曉鵬,鄭宏斌,徐軍,等.光裸地表紅外輻射統計模型及紋理特征分析.西安電子科技大學學報.2007,34(6):944-946.

[20]呂紅慶,王振清,王永軍,等.高超聲速鈍頭體氣動熱分析.導彈與航天運載技術.2008, 3:41-45.

[21]閔桂榮,郭舜,航空航天.航天器熱控制.北京:科學出版社,1998.

[22]Maruyama,S.,Kashiwa,T.,Yugami,H.,et al.Thermal radiation from two-dimensionally confined modes in microcavities.Applied Physics Letters.2001,79(9):1393-1395.

[23]Sai,H.,Yugami,H.,Akiyama,Y.,et al.Spectral control of thermal emission by periodic microstructured surfaces in the near-infrared region.JOSA A.2001,18(7):1471-1476.

[24]Lin,S.Y.,Moreno,J.,Fleming,J.Three-dimensional photonic-crystal emitter for thermal photovoltaic power generation.Applied physics letters.2003,83(2):380-382.

[25]Huang,J.G.,Xuan,Y.M.,Li,Q.Narrow-band spectral features of structured silver surface with rectangular resonant cavities.Journal of Quantitative Spectroscopy and Radiative Transfer.2011,112(5):839-846.

[26]王衛杰,符策基,譚文長.微光柵對SiC/光子晶體結構熱輻射特性的調控.工程熱物理學報,2012,7:029.

[27]Hu,L.,Chen,G.Analysis of optical absorption in silicon nanowire arrays for photovoltaic applications.Nano letters.2007,7(11):3249-3252.

[28]Chang,Y.C.,Mei,G.H.,Chang,T.W.,et al.Design and fabrication of a nanostructured surface combining antireflective and enhanced-hydrophobic effects.Nanotechnology.2007,18(28):285303.

[29]Mutitu,J.G.,Shi,S.Y.,Chen,C.H.,et al.Thin film solar cell design based on photonic crystal and diffractive grating structures.Optics Express.2008,16(19):15238-15248.

[30]Zhu,J.,Yu,Z.F.,Burkhard,G.F.,et al.Optical absorption enhancement in amorphous silicon nanowire and nanocone arrays.Nano letters.2008,9(1):279-282.

[31]Rockstuhl,C.,Lederer,F.Photon management by metallic nanodiscs in thin film solar cells.Applied Physics Letters.2009,94(21):213102-213103.

[32]黎慧華,王慶康.硅薄膜太陽能電池背部反射結構設計.量子光學學報.2009,15(4):380-386.

[33]許宜申,顧濟華,陶智,等.寬波長太陽能電池抗反射層結構設計.紅外與激光工程.2009,38(6):999-1002.

[34]吳奉炳,張大偉.太陽能電池中微納陷光光柵結構.激光雜志.2010(005):15-17.

[35]陳健,王慶康,李海華.硅薄膜太陽電池抗反射微納結構研究.半導體光電.2011,32(1):24-29.

[36]Chang,C.H.,Dominguez-Caballero,J.A.,Choi,H.J.,et al.Nanostructured gradient-index antireflection diffractive optics.Optics letters.2011,36(12):2354.

[37]Leem,J.,Joo,D.,Yu,J.Biomimetic parabola-shaped AZO subwavelength grating structures for efficient antirellection of Si-based solar cells.Solar Energy Materials and Solar Cells.2011,95(8):2221-2227.

[38]Yang,L.L.,Xuan,Y.M.,Han,Y.G.,et al.Investigation on the performance enhancement of silicon solar cells with an assembly grating structure. Energy Conversion and Management. 2012,54(1):30-37.

[39]Wang,H.,Liu,X.L.,Wang,L.P.,et al.Effective medium analysis on the optical properties of silicon nanowire arrays.SPIE Optical Engineering+Applications:International Society for Optics and Photonics,2012.84950C.

[40]Cheng,Q.,Li,P.P.,Lu,J.,et al.Silicon complex grating with different groove depths as an absorber for solar cells.Journal of Quantitative Spectroscopy and Radiative Transfer.2013.

[41]王蕊.粗糙面及其與目標復合電磁散射中的相關問題研究.西安:西安電子科技大學,2009.

[42]胡來平,劉占軍.電磁學計算方法的比較.現代電子技術.2003,26(11):75-78.

[43]蔣乙九.一維周期性微結構表面輻射特性的數值模擬.哈爾濱:哈爾濱工業大學,2010.

[44]孫杰.亞波長金屬光柵光譜輻射特性數值分析.哈爾濱:哈爾濱工業大學,2010.

[45]Jackson,J.D.,Fox,R.F.Classical electrodynamics.American Journal of Physics.1999,67:841.

[46]楊儒貴,湯姆斯.電磁場與電磁波.北京:高等教育出版社,2003.

[47]Moharam,M.,Gaylord,T.Rigorous coupled-wave analysis of planar-grating diffraction.JOSA.1981,71(7):811-818.

[48]黃志鋒.高方向分辨率輻射強度及表面輻射特性計算研究.武漢:華中科技大學,2010.

[49]Huang,Z.F.,Hsu,P.F.,Wang,A.H.,et al.Wavelength-selective infrared absorptance of heavily doped silicon complex gratings with geometric modifications.JOSA B.2011,28(4):929-936.

[50]Zhang,Z.M.,Wang,L.P.Measurements and modeling of the spectral and directional radiative properties of micro/nanostructured materials.International Journal of Thermophysics.2011:1-34.

[51]Park,K.,Lee,B.J.,Fu,C.J.,et al.Study of the surface and bulk polaritons with a negative index metamaterial.JOSA B.2005,22(5):1016-1023.

[52]Homola,J.,Koudela,I.,Yee,S.S.Surface plasmon resonance sensors based on diffraction gratings and prism couplers:sensitivity comparison.Sensors and Actuators B:Chemical.1999,54(1):16-24.

[53]McPhedran,R.,Maystre,D.A detailed theoretical study of the anomalies of a sinusoidal diffraction grating.Journal of Modern Optics.1974,21(5):413-421.

[54]Hessel,A.,Oliner,A.A new theory of Wood's anomalies on optical gratings.Applied Optics.1965,4(10):1275-1297.

[55]Lee,B.,Chen,Y.B.,Zhang,Z.M.Transmission enhancement through nanoscale metallic slit arrays from the visible to mid-infrared.Journal of Computational and Theoretical Nanoscience.2008,5(2):201-213.

[56]鄭厚植.半導體微腔物理及其應用.半導體學報.2003,18(7):481-491.

[57]李小紅,朱遵略.微腔物理的現狀及其發展前景.新鄉師范高等專科學校學報.2003,17(2):15-16.

[58]Wang,L.P.,Zhang,Z.M.Resonance transmission or absorption in deep gratings explained by magnetic polaritons.Applied Physics Letters.2009,95(11):111904.

[59]Taguchi,G.Introduction to quality engineering:designing quality into products and processes.1986.

[60]Chiang,K.T.Optimization of the design parameters of Parallel-Plain Fin heat sink module cooling phenomenon based on the Taguchi method.International communications in heat and mass transfer.2005,32(9):1193-1201.

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