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Artykuły w czasopismach na temat "Solar cells- Light absorption"
Guolong Li, Guolong Li, Hongyu Zhen Hongyu Zhen, Zhuoyin Huang Zhuoyin Huang, Kan Li Kan Li, Weidong Shen Weidong Shen i Xu Liu Xu Liu. "Silver clusters insert into polymer solar cell for enhancing light absorption". Chinese Optics Letters 10, nr 1 (2012): 012401–12403. http://dx.doi.org/10.3788/col201210.012401.
Pełny tekst źródłaPeter Amalathas, Amalraj, i Maan Alkaisi. "Nanostructures for Light Trapping in Thin Film Solar Cells". Micromachines 10, nr 9 (17.09.2019): 619. http://dx.doi.org/10.3390/mi10090619.
Pełny tekst źródłaHe, Jinna, Chunzhen Fan, Junqiao Wang, Yongguang Cheng, Pei Ding i Erjun Liang. "Plasmonic Nanostructure for Enhanced Light Absorption in Ultrathin Silicon Solar Cells". Advances in OptoElectronics 2012 (5.11.2012): 1–8. http://dx.doi.org/10.1155/2012/592754.
Pełny tekst źródłaJiang, Weiwen, i Xi Chen. "Light absorption enhancement in ultrathin perovskite solar cells using plasmonic light trapping and bionic anti-reflection coating". AIP Advances 12, nr 6 (1.06.2022): 065106. http://dx.doi.org/10.1063/5.0092059.
Pełny tekst źródłaTahersima, Mohammad Hossein, i Volker J. Sorger. "Strong Photon Absorption in 2-D Material-Based Spiral Photovoltaic Cells". MRS Advances 1, nr 59 (2016): 3915–21. http://dx.doi.org/10.1557/adv.2016.19.
Pełny tekst źródłaKarim, Mohammad Rezaul, Muhammad Ali Shar i Syed Abdullah. "Mixed Dyes for Dye-sensitized Solar Cells Applications". Current Nanoscience >15, nr 5 (19.07.2019): 501–5. http://dx.doi.org/10.2174/1573413715666190325165613.
Pełny tekst źródłaNakayama, Keisuke, Katsuaki Tanabe i Harry A. Atwater. "Plasmonic nanoparticle enhanced light absorption in GaAs solar cells". Applied Physics Letters 93, nr 12 (22.09.2008): 121904. http://dx.doi.org/10.1063/1.2988288.
Pełny tekst źródłaKupec, Jan, Ralph L. Stoop i Bernd Witzigmann. "Light absorption and emission in nanowire array solar cells". Optics Express 18, nr 26 (15.12.2010): 27589. http://dx.doi.org/10.1364/oe.18.027589.
Pełny tekst źródłaAlaeian, Hadiseh, Ashwin C. Atre i Jennifer A. Dionne. "Optimized light absorption in Si wire array solar cells". Journal of Optics 14, nr 2 (12.01.2012): 024006. http://dx.doi.org/10.1088/2040-8978/14/2/024006.
Pełny tekst źródłaYang, Jianjun, Jiaxuan Liu, Yaxin Li, Xiaobao Yu, Zichuan Yi, Zhi Zhang, Feng Chi i Liming Liu. "A DSSC Electrolyte Preparation Method Considering Light Path and Light Absorption". Micromachines 13, nr 11 (9.11.2022): 1930. http://dx.doi.org/10.3390/mi13111930.
Pełny tekst źródłaRozprawy doktorskie na temat "Solar cells- Light absorption"
Yang, Qingyi. "Broadband light absorption enhancement in organic solar cells". HKBU Institutional Repository, 2014. https://repository.hkbu.edu.hk/etd_oa/54.
Pełny tekst źródłaFang, Liping. "Enhancing light absorption in silicon solar cells by fluorescent molecules". Thesis, University of Southampton, 2014. https://eprints.soton.ac.uk/370511/.
Pełny tekst źródłaLan, Weixia. "Light harvesting and charge collection in bulk heterojunction organic solar cells". HKBU Institutional Repository, 2016. https://repository.hkbu.edu.hk/etd_oa/318.
Pełny tekst źródłaDunbar, Ricky. "Using metallic nanostructures to trap light and enhance absorption in organic solar cells". Diss., lmu, 2012. http://nbn-resolving.de/urn:nbn:de:bvb:19-142241.
Pełny tekst źródłaEllaboudy, Ashton. "ENHANCEMENT OF LIGHT ABSORPTION EFFICIENCY Of SOLAR CELL USING DUAL". DigitalCommons@CalPoly, 2011. https://digitalcommons.calpoly.edu/theses/672.
Pełny tekst źródłaCurtin, Benjamin Michael. "Photonic crystal back-reflectors for light management and enhanced absorption in a-Si:H solar cells". [Ames, Iowa : Iowa State University], 2009. http://gateway.proquest.com/openurl?url_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:dissertation&res_dat=xri:pqdiss&rft_dat=xri:pqdiss:1468075.
Pełny tekst źródłaBeyer, Beatrice. "Architectural Approaches for the Absorption Layer and their Impact on Organic Solar Cells". Doctoral thesis, Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden, 2014. http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-133594.
Pełny tekst źródłaMüller, Thomas Christian Mathias [Verfasser], Uwe [Akademischer Betreuer] Rau i Christoph [Akademischer Betreuer] Brabec. "Light absorption and radiative recombination in thin-film solar cells / Thomas Christian Mathias Müller ; Uwe Rau, Christoph Brabec". Aachen : Universitätsbibliothek der RWTH Aachen, 2015. http://d-nb.info/1128598019/34.
Pełny tekst źródłaDunbar, Ricky [Verfasser], i Lukas [Akademischer Betreuer] Schmidt-Mende. "Using metallic nanostructures to trap light and enhance absorption in organic solar cells / Ricky Dunbar. Betreuer: Lukas Schmidt-Mende". München : Universitätsbibliothek der Ludwig-Maximilians-Universität, 2012. http://d-nb.info/1022318829/34.
Pełny tekst źródłaYin, Guanchao [Verfasser], Martina [Akademischer Betreuer] Schmid, Walter [Akademischer Betreuer] Reimers i John [Akademischer Betreuer] Banhart. "Preparation of ultra-thin CuIn1-xGaxSe2 solar cells and their light absorption enhancement / Guanchao Yin. Gutachter: John Banhart ; Walter Reimers ; Martina Schmid. Betreuer: Martina Schmid ; Walter Reimers". Berlin : Technische Universität Berlin, 2015. http://d-nb.info/107524921X/34.
Pełny tekst źródłaKsiążki na temat "Solar cells- Light absorption"
United States. National Aeronautics and Space Administration., red. Enhancing optical absorption in InP and GaAs utilizing profile etching. [Washington, DC]: National Aeronautics and Space Administration, 1991.
Znajdź pełny tekst źródłaLuque, Antonio, i Alexander Virgil Mellor. Photon Absorption Models in Nanostructured Semiconductor Solar Cells and Devices. Cham: Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-14538-9.
Pełny tekst źródłaK, Dutta S., i Saha H, red. Texturization and light trapping in silicon solar cells. New York: Nova Science Publishers, 2009.
Znajdź pełny tekst źródłaSolanki, Chetan Singh, i Hemant Kumar Singh. Anti-reflection and Light Trapping in c-Si Solar Cells. Singapore: Springer Singapore, 2017. http://dx.doi.org/10.1007/978-981-10-4771-8.
Pełny tekst źródłaW, Kerslake Thomas, Scheiman David A i NASA Glenn Research Center, red. Analysis of direct solar illumination on the backside of space station solar cells. [Cleveland, Ohio]: National Aeronautics and Space Administration, Glenn Research Center, 1999.
Znajdź pełny tekst źródłaWilliams, Michael D. Influence of refractive index and solar concentration on optical power absorption in slabs. Hampton, Va: Langley Research Center, 1988.
Znajdź pełny tekst źródłaLi, Jinmin. Solid state lighting and solar energy technologies: 12-14 November 2007, Beijing, China. Redaktorzy Society of Photo-optical Instrumentation Engineers, Zhongguo guang xue xue hui, Nihon Kōgakkai (Ōyō Butsuri Gakkai), Zhongguo ke xue ji shu xie hui, Guo jia zi ran ke xue ji jin wei yuan hui (China) i China. Guo jia ke xue ji shu bu. Bellingham, Wash: SPIE, 2008.
Znajdź pełny tekst źródłaPrinciples of solar cells, LEDs, and diodes: The role of the PN junction. Chichester, West Sussex, U.K: Wiley, 2011.
Znajdź pełny tekst źródłaPhotonics, and Optoelectronics Meetings (2009 Wuhan China). Photonics and Optoelectronics Meetings (POEM) 2009: Solar cells, solid state lighting, and information display technologies : 8-10 August 2009, Wuhan, China. Bellingham, Wash: SPIE, 2009.
Znajdź pełny tekst źródłaLarsen, A. Nylandsted. Production of solar cells on the basis of low cost silicon by application of ion implantation and light-induced transient heating. Luxembourg: Commission of the European Communities, 1985.
Znajdź pełny tekst źródłaCzęści książek na temat "Solar cells- Light absorption"
Bisquert, Juan. "Light Absorption, Carrier Recombination, and Luminescence". W The Physics of Solar Cells, 23–42. Boca Raton, FL : CRC Press, Taylor & Francis Group, [2018]: CRC Press, 2017. http://dx.doi.org/10.1201/b22380-2.
Pełny tekst źródłaBajpai, Manisha, Ritu Srivastava i Ravindra Dhar. "Effect of Plasmonic Enhancement of Light Absorption on the Efficiency of Polymer Solar Cell". W Springer Proceedings in Physics, 315–17. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-29096-6_42.
Pełny tekst źródłaCheng, Hsin-Hung, Shih-Wen Chen, Jen-You Chu, Ding-Zheng Lin, Tsung-Dar Cheng, Yi-Ping Chen, Ying-Yu Chang i in. "Light Trapping for Solar Cells". W High-Efficiency Solar Cells, 449–73. Cham: Springer International Publishing, 2013. http://dx.doi.org/10.1007/978-3-319-01988-8_14.
Pełny tekst źródłaMiskovsky, N. M., P. H. Cutler, P. B. Lerner, A. Mayer, B. G. Willis, D. T. Zimmerman, G. J. Weisel i T. E. Sullivan. "Nanoscale Rectennas with Sharp Tips for Absorption and Rectification of Optical Radiation". W Rectenna Solar Cells, 135–61. New York, NY: Springer New York, 2013. http://dx.doi.org/10.1007/978-1-4614-3716-1_7.
Pełny tekst źródłaBorchert, Holger. "Absorption and Photoluminescence Spectroscopy". W Solar Cells Based on Colloidal Nanocrystals, 119–27. Cham: Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-04388-3_8.
Pełny tekst źródłaHolman, Zachary, i Mathieu Boccard. "Light Management in Silicon Solar Cells". W Photovoltaic Solar Energy, 136–49. Chichester, UK: John Wiley & Sons, Ltd, 2017. http://dx.doi.org/10.1002/9781118927496.ch14.
Pełny tekst źródłaOhkita, Hideo, i Shinzaburo Ito. "Exciton and Charge Dynamics in Polymer Solar Cells Studied by Transient Absorption Spectroscopy". W Organic Solar Cells, 103–37. London: Springer London, 2012. http://dx.doi.org/10.1007/978-1-4471-4823-4_5.
Pełny tekst źródłaBisquert, Juan. "Blackbody Radiation and Light". W The Physics of Solar Cells, 1–22. Boca Raton, FL : CRC Press, Taylor & Francis Group, [2018]: CRC Press, 2017. http://dx.doi.org/10.1201/b22380-1.
Pełny tekst źródłaSeifert, Gerhard, Isolde Schwedler, Jens Schneider i Ralf B. Wehrspohn. "Light Management in Solar Modules". W Photon Management in Solar Cells, 323–46. Weinheim, Germany: Wiley-VCH Verlag GmbH & Co. KGaA, 2015. http://dx.doi.org/10.1002/9783527665662.ch12.
Pełny tekst źródłaSchropp, R. E. I., H. Meiling, W. G. J. H. M. Sark, J. Stammeijer, J. Bezemer i W. F. Weg. "Absorption Optimization of Amorphous Silicon Solar Cells". W Tenth E.C. Photovoltaic Solar Energy Conference, 1087–90. Dordrecht: Springer Netherlands, 1991. http://dx.doi.org/10.1007/978-94-011-3622-8_278.
Pełny tekst źródłaStreszczenia konferencji na temat "Solar cells- Light absorption"
Gu, S. Q., P. C. Taylor i S. Nitta. "Light-induced changes in subband absorption in a-Si:H using photoluminescence absorption spectroscopy". W Amorphous silicon materials and solar cells. AIP, 1991. http://dx.doi.org/10.1063/1.41022.
Pełny tekst źródłaSepeai, Suhaila, M. Y. Sulaiman, Saleem H. Zaidi i Kamaruzzaman Sopian. "Enhanced light absorption in bifacial solar cells". W 2012 10th IEEE International Conference on Semiconductor Electronics (ICSE). IEEE, 2012. http://dx.doi.org/10.1109/smelec.2012.6417086.
Pełny tekst źródłaSmay, Joshua, Ola Rashwan, James Then i Darien Perez. "Investigation of Parasitic Absorption in Back Contact of CdTe Solar Cells". W ASME 2018 12th International Conference on Energy Sustainability collocated with the ASME 2018 Power Conference and the ASME 2018 Nuclear Forum. American Society of Mechanical Engineers, 2018. http://dx.doi.org/10.1115/es2018-7533.
Pełny tekst źródłaLiu, Fang, Di Qu, Qi Xu, Wanlu Xie i Yidong Huang. "Plasmonic Enhanced Light Absorption of Solar Cells with Metal Nanoparticles". W Optical Instrumentation for Energy and Environmental Applications. Washington, D.C.: OSA, 2011. http://dx.doi.org/10.1364/e2.2011.jwe11.
Pełny tekst źródłaDuché, D., L. Escoubas, J. J. Simon, C. Gourgon, C. Masclaux, Ph Torchio, J. Le Rouzo i F. Flory. "Photonic crystals for improving light absorption in organic solar cells". W SPIE OPTO, redaktorzy Alexandre Freundlich i Jean-Francois F. Guillemoles. SPIE, 2012. http://dx.doi.org/10.1117/12.909091.
Pełny tekst źródłaMaho, Anthony, Nathan Daem, Michaël Lobet, Pierre Piron, Alexandre Mayer, Pierre Colson, Jérôme Loicq, Catherine Henrist, Rudi Cloots i Jennifer Dewalque. "Photonic Structuration of Perovskite Solar Cells Towards Enhanced Light Absorption". W International Conference on Hybrid and Organic Photovoltaics. València: Fundació Scito, 2022. http://dx.doi.org/10.29363/nanoge.hopv.2022.052.
Pełny tekst źródłaLi, Rongheng, i Ben Q. Li. "Numerical Modeling of Nanostructure-Enhanced Solar Cells". W ASME 2014 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2014. http://dx.doi.org/10.1115/imece2014-38628.
Pełny tekst źródłaYuanpei, Xu, i Xuan Yimin. "Light-Harvesting and Photon Management in GaAs Solar Cells for Photovoltaic-Thermoelectric Hybrid Systems". W ASME 2016 5th International Conference on Micro/Nanoscale Heat and Mass Transfer. American Society of Mechanical Engineers, 2016. http://dx.doi.org/10.1115/mnhmt2016-6357.
Pełny tekst źródłaJia, Zhenhui, Changhong Liu i Ben Q. Li. "Nanoparticle-Enhanced Plasmonic Light Absorption in Thin-Film Silicon Solar Cells". W ASME 2014 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2014. http://dx.doi.org/10.1115/imece2014-36182.
Pełny tekst źródłaHu, Lu, Xiaoyuan Chen i Gang Chen. "Surface-Plasmon Enhanced Near-Bandgap Light Absorption in Silicon Photovoltaics". W ASME 2008 3rd Energy Nanotechnology International Conference collocated with the Heat Transfer, Fluids Engineering, and Energy Sustainability Conferences. ASMEDC, 2008. http://dx.doi.org/10.1115/enic2008-53056.
Pełny tekst źródłaRaporty organizacyjne na temat "Solar cells- Light absorption"
Atwater, Harry. Solar Cells from Earth-Abundant Semiconductors with Plasmon-Enhanced Light Absorption. Office of Scientific and Technical Information (OSTI), kwiecień 2012. http://dx.doi.org/10.2172/1131343.
Pełny tekst źródłaRusso, Johnny A., William Ray, Marc S. Litz i Charlie Wu. Low Illumination Light (LIL) Solar Cells: Indoor and Monochromatic Light Harvesting. Fort Belvoir, VA: Defense Technical Information Center, październik 2015. http://dx.doi.org/10.21236/ada625514.
Pełny tekst źródłaJohn, Sajeev. Light Trapping, Absorption and Solar Energy Harvesting by Artificial Materials. Office of Scientific and Technical Information (OSTI), czerwiec 2014. http://dx.doi.org/10.2172/1167261.
Pełny tekst źródłaTimmons, Michael L. Light-Weight, Low Cost, High-Efficiency Solar Cells Space Planar Arrays. Fort Belvoir, VA: Defense Technical Information Center, styczeń 1996. http://dx.doi.org/10.21236/adb209013.
Pełny tekst źródłaGuo, Tzung-Fang. The Organic-Oxide Interfacial Layer on the Studies of Organic Electronics (Light-Emitting Diodes and Solar Cells). Fort Belvoir, VA: Defense Technical Information Center, październik 2008. http://dx.doi.org/10.21236/ada488098.
Pełny tekst źródłaXiao, Teng. Modifying the organic/electrode interface in Organic Solar Cells (OSCs) and improving the efficiency of solution-processed phosphorescent Organic Light-Emitting Diodes (OLEDs). Office of Scientific and Technical Information (OSTI), styczeń 2012. http://dx.doi.org/10.2172/1048522.
Pełny tekst źródłaLow-Cost Nano-Patterning Process Makes Millions of Holes in Silver Film, Boosting Light-Capturing Qualities of Solar Cells (Fact Sheet). Office of Scientific and Technical Information (OSTI), luty 2011. http://dx.doi.org/10.2172/1009295.
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