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Impact of energy alignment and morphology on the efficiency in inorganic-organic hybrid solar cells

机译:能量排列和形态对无机-有机混合太阳能电池效率的影响

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摘要

Carrier transport in hybrid inorganic-organic solar cells has been studied by means of a two-dimensional drift-diffusion-based model including the generation and motion of exci-tons. The devices consist of a polymer serving as donor material and a semiconducting small-band gap inorganic component as acceptor material. For the first time it is taken into account that, in strong contrast to purely organic or inorganic cells, charge carriers can be generated at the heterojunction (due to dissociation of the donor excitons) and in the bulk of the acceptor material (due to band to band generation in the inorganic material). The efficiencies of devices were investigated dependent on (i) the donor-acceptor interface geometry, (ii) the transport level offsets at the heterojunction, and (iii) the energy barriers formed at the contacts. For each case, a detailed analysis of the behavior is given. We demonstrate that, depending on the particular scenario, each of these three factors can be responsible for profoundly reduced efficiencies and pronounced s-shaped sections in the 1-V curves. Moreover, we show that each of the investigated factors may give rise to equally serious efficiency losses. However, it is not possible to identify a dominant effect. Depending on the particular combination, the efficiency can vary by two orders of magnitudes. In order to avoid such losses, our theoretical assessment reveals that suitable material combinations are required to form (i) ohmic contacts, (ii) preclude formation of isolated islands or nanoparticles during growth, and (iii) possess a hole-blocking offset in the transport levels at the heterojunction.
机译:通过基于二维漂移-扩散的模型研究了激子的产生和运动,研究了混合无机-有机太阳能电池中的载流子传输。该装置由用作施主材料的聚合物和作为受主材料的半导体小带隙无机组分组成。首次考虑到,与纯有机或无机电池形成强烈反差的是,异质结(由于施主激子的离解)和大部分受体材料(由于带)会产生电荷载流子在无机材料中产生能带)。根据(i)供体-受体界面的几何形状,(ii)异质结处的传输能级偏移和(iii)在触点处形成的能垒来研究器件的效率。对于每种情况,都会对行为进行详细分析。我们证明,根据特定情况,这三个因素中的每一个都可能导致效率显着降低和1-V曲线中明显的s形截面。此外,我们表明,每个调查的因素都可能导致同样严重的效率损失。但是,不可能确定主导作用。取决于特定的组合,效率可以变化两个数量级。为了避免此类损失,我们的理论评估表明,需要适当的材料组合以形成(i)欧姆接触,(ii)防止在生长过程中形成孤立的岛或纳米颗粒,并且(iii)在硅中具有空穴阻挡偏移异质结处的输运能级。

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  • 来源
    《Organic Electronics》 |2010年第12期|p.1999-2011|共13页
  • 作者单位

    Institute of Theoretical and Computational Physics, Craz University of Technology. Petersgasse 16, 8010 Craz, Austria,Institute for Chemistry and Technology of Materials and Christian Doppler Laboratory for Nanocomposite Solar Cells. Craz University of Technology. Stremayrgasse 9,8010 Craz, Austria;

    Institute of Theoretical and Computational Physics, Craz University of Technology. Petersgasse 16, 8010 Craz, Austria,Institute for Chemistry and Technology of Materials and Christian Doppler Laboratory for Nanocomposite Solar Cells. Craz University of Technology. Stremayrgasse 9,8010 Craz, Austria;

    Institute for Chemistry and Technology of Materials and Christian Doppler Laboratory for Nanocomposite Solar Cells. Craz University of Technology. Stremayrgasse 9,8010 Craz, Austria;

    Institute of Theoretical and Computational Physics, Craz University of Technology. Petersgasse 16, 8010 Craz, Austria;

    Institute of Theoretical and Computational Physics, Craz University of Technology. Petersgasse 16, 8010 Craz, Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hybrid inorganic-organic solar cells; drift diffusion; two-dimensional model;

    机译:无机-有机混合太阳能电池;漂移扩散二维模型;

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