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Recombination and transport in microcrystalline pin solar cells studied with pulsed electrically detected magnetic resonance

机译:脉冲电检测磁共振研究微晶pin太阳能电池中的重组和传输

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摘要

An analysis of spin-dependent processes in microcrystalline silicon (mu c-Si:H) pin solar cells is presented using pulsed electrically detected magnetic resonance (pEDMR). In this first study it is shown that by modulating the morphology of the n-type contact layer from amorphous to microcrystalline, pronounced changes in the pEDMR spectra may be observed. Due to the fact that pEDMR allows a deconvolution of the spin-dependent signals in time as well as in magnetic field domain, we were able to significantly reduce the complexity of the spectra compared to conventional EDMR. In the samples containing amorphous n-type contact layers we found signals from shallow localized conduction band tail states and phosphorous donor states. Upon replacement of this layer by its microcrystalline counterpart both signals disappeared. Possible spin-dependent transport mechanisms involving paramagnetic states in the various layers are discussed in view of sign and time evolution of the associated pEDMR signals.
机译:使用脉冲电检测磁共振(pEDMR)分析了微晶硅(mu c-Si:H)引脚太阳能电池中自旋相关的过程。在这项第一项研究中,研究表明,通过将n型接触层的形态从非晶态转变为微晶态,可以观察到pEDMR光谱发生明显变化。由于pEDMR可以在时间上以及在磁场域中对自旋相关信号进行去卷积,因此与传统EDMR相比,我们能够显着降低光谱的复杂性。在包含非晶n型接触层的样品中,我们发现信号来自浅的局部导带尾态和磷供体态。用该层的微晶对应物代替该层后,两个信号均消失。鉴于相关pEDMR信号的符号和时间演化,讨论了可能涉及自旋的各个层中涉及顺磁态的自发传输机制。

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