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Down-converter based on rare earth doped fluoride glass to improve Si-based solar cell efficiency

机译:基于稀土掺杂氟化物玻璃的下变频器提高SI基太阳能电池效率

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The solar cells efficiency may be improved by better exploitation of the solar spectrum, making use of the downconversion mechanism, where one high energy photon is cut into two low energy photons. The choice of the matrix is a crucial point to obtain an efficient down-conversion process with rare-earth ions. When energy transfer between rare earth ions is used to activate this process, high emission and absorption cross sections as well as low cutoff phonon energy are mandatory. A low phonon energy host lattice reduces non-radiative transition rates leading to the increase of the luminescent quantum yield and of the energy transfer efficiency. Recently, some studies have demonstrated that fluoride and oxyfluoride glasses may be valid systems to support an effective quantum cutting process. As a fluoride material, the relatively low phonon energy, around 600cm-1, of the ZLAG (70ZrF4 23.5LaF3 0.5AlF3 6GaF3 in mol%) glass makes it highly suitable for applications involving energy transfers. In this study, attention is focused on the assessment of the energy transfer efficiency between the Pr3+ and Yb3+ ions in bulk fluoride glasses ZLAG
机译:通过更好地利用太阳光谱,利用下变频机构可以改善太阳能电池效率,其中一个高能量光子被切割成两个低能量光子。基质的选择是具有稀土离子的有效下转换过程的重要点。当稀土离子之间的能量转移用于激活该过程时,强制性和吸收横截面以及低截止声子能量是强制性的。低声振能量宿主晶格减少了非辐射转变速率,导致发光量子产量和能量转移效率的增加。最近,一些研究表明,氟化物和氧氟化玻璃可能是有效的系统,以支持有效的量子切割过程。作为氟化物材料,ZLAG(70zRF4 23.5LAF3 0.5Alf3 6gAF3在摩尔%)玻璃中,约600cm-1的相对低的声子能量使其非常适合涉及能量转移的应用。在这项研究中,注意力集中在大量氟化物眼镜Zlag中PR3 +和YB3 +离子之间的能量转移效率的评估

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