【摘 要】
:
半导体量子点理论上在一个高能量光子作用下,能产生多个激子(电子-空穴对),即多重激子效应,利用其制备的激子型太阳能电池,如量子点敏化太阳能电池,可以突破传统P-N结太阳能电池的Shockley-Queisser极限(33%)模型,期望获得更高的光电转换效率(41%).
【出 处】
:
2014中国功能材料科技与产业高层论坛
论文部分内容阅读
半导体量子点理论上在一个高能量光子作用下,能产生多个激子(电子-空穴对),即多重激子效应,利用其制备的激子型太阳能电池,如量子点敏化太阳能电池,可以突破传统P-N结太阳能电池的Shockley-Queisser极限(33%)模型,期望获得更高的光电转换效率(41%).
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