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Evidence of Tailoring the Interfacial Chemical Composition in Normal Structure Hybrid Organohalide Perovskites by a Self-Assembled Monolayer

机译:通过自组装单层定制正常结构杂交杂交织物植物植物钙酯的界面化学成分的证据

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Current-voltage hysteresis is a major issue for normal architecture organo-halide perovskite solar cells. In this manuscript we reveal a several-angstrom thick methylammonium iodide-rich interface between the perovskite and the metal oxide. Surface functionalization via :self-assembled monolayers allowed us to control the composition.of the interface monolayer from Pb poor to Pb rich, which, in parallel, suppresses hysteresis in perovskite solar cells. The bulk of the perovskite films is not affected by the interface engineering and remains _highly- crystalline in the surface normal direction over the whole film thickness. The subnanometer structural modifications of the buried interface were revealed by X-ray reflectivity, which is most sensitive to monitor changes in the mass density of only several-angstrom thin interfacial layers as a function of substrate functionalization. From Kelvin probe force microscopy study on a solar cell cross section, we further demonstrate local variations of the potential on different electroriAransporting layers within a solar cell. Ori-the basis of these findings, we present a unifying model explaining hysteresis in perovskite solar cells, giving an insight into,one crucial aspect of hysteresis for the first time and paving way for new strategies in the field of perovskite-based opto-electronic devices.
机译:电流电压滞后是普通架构有机卤化物钙钛矿太阳能电池的主要问题。在该手稿中,我们在钙钛矿和金属氧化物之间揭示了几埃厚的甲基碘化物富含界面。通过地面官能化通过:自组装单层使我们能够控制组合物。将界面单层从PB差至Pb富含Pb,这并平行地抑制钙钛矿太阳能电池中的滞后。大部分钙钛矿薄膜不受界面工程的影响,并且在整个膜厚度上保持表面法线方向上的_高晶体。通过X射线反射率揭示了掩埋界面的亚晶仪结构修改,这对于底物官能化的函数来说是最敏感的,对于监测仅几埃薄界面层的质量密度的变化。从开尔文探测力显微镜研究到太阳能电池横截面,我们进一步展示了太阳能电池内不同电化电路的潜力的局部变化。 ori-这些发现的基础,我们提出了一个统一模型,解释佩洛夫斯基特太阳能电池滞后,欣赏渗透基于光电领域的新策略的第一次和铺平滞后的一个关键方面,是第一次和铺平的方式。设备。

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