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首页> 外文期刊>Photovoltaics, IEEE Journal of >Impact of Carrier Concentration and Carrier Lifetime on MgZnO/CdSeTe/CdTe Solar Cells
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Impact of Carrier Concentration and Carrier Lifetime on MgZnO/CdSeTe/CdTe Solar Cells

机译:载流子浓度和载体寿命对MGZNO / CDSETE / CDTE太阳能电池的影响

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摘要

The performance impact of multiple parameters related to the use of MgZnO (MZO) as the emitter for bilayer CdSeTe/CdTe solar cells has been investigated in detail through numerical simulations. Such a comprehensive study is particularly important, because while cell fabrication using MZO has been highly successful in some cases, it has been less so in others, and it has not been clear which combinations of parameter values are most effective. The parameters considered here include the recombination velocity at the emitter/absorber interface, bulk recombination lifetime, and the carrier concentrations of the emitter and absorber. The ranges chosen for the simulation parameters are those most likely to be found experimentally. The primary finding is that independent of the interfacial recombination velocity and bulk recombination lifetime, the MZO carrier density should be > 10(17) cm(-3) and in any case greater than that of the absorber to reduce interface recombination. At the same time, a shallowdopant the order of 50 meV or less should reduce Shockley-Read-Hall recombination in the bulk and enable VOC > 1 V.
机译:通过数值模拟详细研究了与双层CDE / CDTE太阳能电池的发射器的使用MgzNo(MZO)相关的多个参数的性能影响。这种综合研究尤为重要,因为在某些情况下使用MZO的细胞制造一直非常成功,但在其他情况下,它在其他方面已经不那么少,而且还没有明确参数值的组合最有效。这里考虑的参数包括发射器/吸收器界面处的重组速度,体积重组寿命和发射器和吸收器的载体浓度。为模拟参数选择的范围是最有可能在实验上发现的范围。主要发现是,独立于界面重组速度和块状重组寿命,MZO载体密度应为> 10(17 )cm(-3),并且在任何情况下都大于吸收器的界面重组。与此同时,浅常工,50 mev或更少的阶数应减少体积中的震撼读音乐会重组,使能源VOC> 1 V.

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