首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Investigations on the physical origin of lateral photovoltage in PbS-colloidal quantum dot/Si heterojunctions
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Investigations on the physical origin of lateral photovoltage in PbS-colloidal quantum dot/Si heterojunctions

机译:PbS-胶体量子点/ Si异质结中横向光电压的物理起源研究

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摘要

Restricted area heterojunctions, an array of lead sulfide colloidal quantum dots (PbS-CQDs) and crystalline silicon, are studied with a non-destructive remote contact light beam induced current (RC-LBIC) technique. As well as getting good quality active area images we observed an anomalous unipolar signal response for the PbS-CQD-Si devices and a conventionally expected bipolar signal profile for the PbS-CQD/p-Si devices. Interestingly, our simulation results consistently yielded a unipolar and bipolar nature in the signals related to the PbSCQD-Si and PbS-CQD/p-Si heterostructures, respectively. In order to explain the physical mechanism involved in the unipolar signal response of the PbS-CQD-Si devices, we propose a model based on the band alignment in the heterojunctions, in addition to the distribution of photo-induced excess majority carriers across the junction. Given that the RC-LBIC technique is well suited to this context, the presence of these two distinct mechanisms (the bipolar and unipolar nature of the signals) needs to be considered in order to have a better interpretation of the data in the characterization of an array of homo/heterojunctions.
机译:使用无损远程接触光束感应电流(RC-LBIC)技术研究了受限区域异质结,硫化铅胶体量子点(PbS-CQDs)和晶体硅的阵列。除了获得高质量的有源区域图像外,我们还观察到了PbS-CQD / n-Si器件的异常单极性信号响应以及PbS-CQD / p-Si器件的常规预期双极性信号曲线。有趣的是,我们的仿真结果始终在与PbSCQD / n-Si和PbS-CQD / p-Si异质结构有关的信号中始终产生了单极性和双极性性质。为了解释PbS-CQD / n-Si器件的单极信号响应所涉及的物理机制,我们提出了一个基于异质结中能带对齐的模型,此外还提出了光诱导的多余多数载流子在整个结构中的分布交界处。鉴于RC-LBIC技术非常适合这种情况,因此需要考虑这两种不同的机制(信号的双极性和单极性性质)的存在,以便更好地解释数据的特征。同质/异质结的数组。

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