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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Role of direct and inverted undoped spiro-OMeTAD-perovskite architectures in determining solar cells performances: an investigation via electrical impedance spectroscopy
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Role of direct and inverted undoped spiro-OMeTAD-perovskite architectures in determining solar cells performances: an investigation via electrical impedance spectroscopy

机译:直接和倒置的角色在确定太阳能电池表演时,直接和倒置的螺旋 - ometad-perovskite架构:通过电阻抗光谱进行研究

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The present study involved an investigation on the reasoning behind the dependence of the perovskite solar cells photovoltaic efficiencies on the relative position of the undoped spiro-OMeTAD hole-transport material with respect to the perovskite in the device. We adopted impedance spectroscopy to investigate the modification of the carrier transport mechanisms across the spiro-OMeTAD/perovskite interface constituting the active part where the main device processes occur. We investigated two interface structures, referred to as the direct (or regular, n-i-p) and the inverted (p-i-n) configuration. This work also intended to further stress the possible adoption of alternative device structures working with undoped hole-transport materials.
机译:本研究涉及对钙钛矿太阳能电池光伏效率依赖性对未掺杂螺欧比特空穴传输材料相对于装置中钙钛矿相对位置的依赖性的推理研究。 我们采用阻抗光谱来研究构成主设备过程的活动部分的螺旋-Ometad / Perovskite界面上的载波传输机制的修改。 我们调查了两个接口结构,称为直接(或常规,n-i-p)和反相(p-i-n)配置。 这项工作还旨在进一步强调可能采用与未掺杂的空穴传输材料一起使用的替代装置结构。

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