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Impact of magnetic fields on the morphology of hybrid perovskite films for solar cells

机译:磁场对太阳能电池杂交钙矿膜形态的影响

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摘要

The impact of magnetic fields on the morphology of hybrid perovskite films is assessed via scanning electron microscopy and X-ray diffraction. Small-grain non-uniform perovskite films are obtained when a large magnetic flux density is applied to the sample during reaction of PbI2 and methylammonium iodide (chloride). Similarly, X-ray diffraction reveals a change of preferential crystalline planes when large magnetic fields are applied. Furthermore, we experimentally demonstrate that the quality of the perovskite film is affected by the magnetic field induced by the magnetic stirring system of the hot plate where the samples are annealed. As a consequence, optimization of the perovskite layer varies with magnetic field and annealing temperature. Finally, we prove that uncontrolled magnetic fields on the environment of preparation can severely influence the reproducibility of results.
机译:通过扫描电子显微镜和X射线衍射评估磁场对杂交钙钛矿膜形态的影响。当在PBI2和甲基碘化甲基碘化甲基碘化物(氯化甲基)的反应期间将大磁通密度施加到样品时,获得小谷物非均匀钙钛矿膜。类似地,当施加大磁场时,X射线衍射显示优先晶平面的变化。此外,我们通过实验证明了钙钛矿膜的质量受到由热板的磁搅拌系统引起的磁场的影响,其中样品是退火的。结果,钙钛矿层的优化随磁场和退火温度而变化。最后,我们证明了在准备环境上的不受控制的磁场可以严重影响结果的再现性。

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