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首页> 外文期刊>Advanced energy materials >A Universal Double-Side Passivation for High Open-Circuit Voltage in Perovskite Solar Cells: Role of Carbonyl Groups in Poly(methyl methacrylate)
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A Universal Double-Side Passivation for High Open-Circuit Voltage in Perovskite Solar Cells: Role of Carbonyl Groups in Poly(methyl methacrylate)

机译:钙钛矿型太阳能电池中高开路电压的通用双面钝化:羰基在聚甲基丙烯酸甲酯中的作用

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The performance of state-of-the-art perovskite solar cells is currently limited by defect-induced recombination at interfaces between the perovskite and the electron and hole transport layers. These defects, most likely undercoordinated Pb and halide ions, must either be removed or passivated if cell efficiencies are to approach their theoretical limit. In this work, a universal double-side polymer passivation approach is introduced using ultrathin poly(methyl methacrylate) (PMMA) films. Very high-efficiency (approximate to 20.8%) perovskite cells with some of the highest open circuit voltages (1.22 V) reported for the same 1.6 eV bandgap are demonstrated. Photoluminescence imaging and transient spectroscopic measurements confirm a significant reduction in nonradiative recombination in the passivated cells, consistent with the voltage increase. Analysis of the molecular interactions between perovskite and PMMA reveals that the carbonyl (C=O) groups on the PMMA are responsible for the excellent passivation via Lewis-base electronic passivation of Pb2+ ions. This work provides new insights and a compelling explanation of how PMMA passivation works, and suggests future directions for developing improved passivation layers.
机译:目前钙钛矿太阳能电池的性能受到钙钛矿与电子和空穴传输层之间界面处的缺陷诱导的复合的限制。如果电池效率接近其理论极限,则必须消除或钝化这些缺陷(很可能是配位不足的Pb和卤离子)。在这项工作中,使用超薄聚甲基丙烯酸甲酯(PMMA)薄膜引入了一种通用的双面聚合物钝化方法。结果表明,对于相同的1.6 eV带隙,钙钛矿电池具有很高的效率(约20.8%),具有一些最高的开路电压(1.22 V)。光致发光成像和瞬态光谱测量证实了钝化电池中非辐射重组的显着减少,这与电压的升高一致。钙钛矿和PMMA之间的分子相互作用的分析表明,PMMA上的羰基(C = O)通过Pb2 +离子的路易斯碱电子钝化实现了出色的钝化。这项工作为PMMA钝化的工作原理提供了新的见解和令人信服的解释,并为开发改进的钝化层提出了未来的方向。

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