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Visualization and Investigation of Charge Transport in Mixed-Halide Perovskite via Lateral-Structured Photovoltaic Devices

机译:混合卤化物钙钛矿中横向结构光伏器件中电荷传输的可视化和研究

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Mixed-halide perovskites, CH3NH3PbI3-xClx, can be used to fabricate highly efficient perovskite solar cells; the presence of chlorine ions affects the perovskite morphology and enhances optoelectronic properties. However, the reported device performances of mixed-halide perovskites are comparable to those of triiodide perovskites, CH3NH3PbI3. Thus, the benefits of the presence of Cl- ions in mixed-halide perovskites are uncertain. To clarify the effects of Cl- on the optoelectronic properties of perovskite devices, a suitable device structure is required. In this study, lateral-structured perovskite devices are fabricated and their electrical properties are investigated. A clear contrast is found between the optoelectronic properties of the mixed-halide and triiodide perovskite; a suitable platform is also constructed for the spectroscopic analysis. Scanning photocurrent spectroscopy is used to visualize the charge carrier diffusion in the perovskite films and it is found that the charge carrier diffusion length of the mixed-halide perovskite is longer. It is also demonstrated by using conducting atomic force microscopy that the charge carrier pathways in the mixed-halide perovskite are more efficient, which means that it has longer charge carrier recombination life-times and higher photocurrents. This lateral-structured device has an architecture that makes it suitable for the observation of charge carrier diffusion and spectroscopic analysis.
机译:混合卤化物钙钛矿CH3NH3PbI3-xClx可用于制造高效钙钛矿太阳能电池。氯离子的存在会影响钙钛矿的形态并增强光电性能。但是,所报道的混合卤化物钙钛矿的器件性能与三碘化物钙钛矿CH3NH3PbI3相当。因此,在混合卤化物钙钛矿中存在Cl-离子的好处尚不确定。为了阐明Cl-对钙钛矿器件的光电性能的影响,需要合适的器件结构。在这项研究中,制造了横向结构的钙钛矿器件,并研究了它们的电性能。在混合卤化物和三碘化物钙钛矿的光电性质之间发现了明显的反差。还构建了用于光谱分析的合适平台。扫描光电流光谱法用于使钙钛矿膜中的载流子扩散可视化,并且发现混合卤化物钙钛矿的载流子扩散长度更长。通过传导原子力显微镜也证明了混合卤化物钙钛矿中的电荷载流子路径更有效,这意味着它具有更长的电荷载流子复合寿命和更高的光电流。这种横向结构的器件具有使其适合于观察电荷载流子扩散和光谱分析的体系结构。

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