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  • 學位論文

電漿輔助大面積硒化銅銦鎵硒太陽能電池

Toward Large Scale CIGS Solar Cell Panel by Novel Plasma Enhanced Selenization Process

指導教授 : 闕郁倫 沈昌宏
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摘要


為因應世界能源短缺,可重複使用、乾淨的能源為下一世代考量的重點。 CIGS為第二代薄膜太陽能電池,具有高吸收係數、能源回收期短短、成本低廉及高穩定性等競爭優勢。德國ZSW已發展出效率21.7%之高效率CIGS太陽能電池,其未來應用於市場之潛力十分龐大。 電漿用於太陽能電池上早有文獻出現,有研究指出硒粒加熱形成硒蒸氣時容易造成Sen (2

關鍵字

太陽能電池

並列摘要


For the sake of energy shortage, renewable and clean energy substitution is a considerable point for the next generation. CIGS is the best thin film solar cell among the second generation solar cells owing to its various outstanding behaviors, such as the highest absorption coefficient, the easiest integration with Si-based technology and the highest efficiency in thin film solar cell. Therefore, it has already attracted tremendous attention in academic and industrial fields. Up to date, the highest efficiency of ~21.7% has been demonstrated by ZSW in Germany. Plasma application on solar cell has been researched by many groups. It has been found that Se vapor is easily formed as Sen, which is ring or train structure (2

並列關鍵字

solar cell

參考文獻


[1]Source:Internation energy agency 2010
[4]Basic Electronics Tutorials Site by Wayne Storr. Last updated 15th July 2015,
[5]Vladan Mlinar ,” Role of theory in the design of semiconducting nanostructures”, The Royal Society of Chemistry 2012
[7]National Center for Photovoltaics, NREL,2015
[8]Rudigier, E., et al.,“Real-time study of phase transformations in Cu–In chalcogenide thin films using in situ Raman spectroscopy and XRD”. Journal of Physics and Chemistry of Solids, 2005. 66(11): p. 1954-1960

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