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Structural characterization of bulk and nanoparticle lead halide perovskite thin films by (S)TEM techniques

机译:散粒和纳米粒子铅卤化物钙钛矿薄膜的结构表征通过(S)TEM技术

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Lead halide (APbX(3)) perovskites, in polycrystalline thin films but also perovskite nanoparticles (NPs) has demonstrated excellent performance to implement a new generation of photovoltaic and photonic devices. The structural characterization of APbX(3) thin films using (scanning) transmission electron microscopy ((S)TEM) techniques can provide valuable information that can be used to understand and model their optoelectronic performance and device properties. However, since APbX(3) perovskites are soft materials, their characterization using (S)TEM is challenging. Here, we study and compare the structural properties of two different metal halide APbX(3) perovskite thin films: bulk CH3NH3PbI3 prepared by spin-coating of the precursors in solution and CsPbBr3 colloidal NPs synthetized and deposited by doctor blading. Both specimen preparation methods and working conditions for analysis by (S)TEM are properly optimized. We show that CH3NH3PbI3 thin films grown by a one-step method are composed of independent grains with random orientations. The growth method results in the formation of tetragonal perovskite thin films with good adherence to an underlying TiO2 layer, which is characterized by a photoluminescence (PL) emission band centered at 775 nm. The perovskite thin films based on CsPbBr3 colloidal NPs, which are used as the building blocks of the film, are preserved by the deposition process, even if small gaps are observed between adjacent NPs. The crystal structure of CsPbBr3 NPs is cubic, which is beneficial for optical properties due to its optimal band gap. The absorption and PL spectra measured in both the thin film and the colloidal solution of CsPbBr3 NPs are very similar, indicating a good homogeneity of the thin films and the absence of aggregation of NPs. However, a particular care was required to avoid long electron irradiation times during our structural studies, even at a low voltage of 80 kV, as the material was observed to decompose through Pb seg
机译:卤化铅(APbX(3))的钙钛矿,在多晶薄膜,而且钙钛矿纳米颗粒(NP)已证明优异的性能以实现一个新的代光伏和光子器件。 APbX(3)薄膜使用(扫描)透射电子显微镜((S)TEM)技术的结构表征可提供可用于理解和模型中的光电性能和器件性能的有价值的信息。然而,由于APbX(3)的钙钛矿是软质材料,使用其特性(S)TEM是具有挑战性的。在这里,我们研究和钙钛矿薄膜比较两种不同的金属卤化物APbX(3)的结构性质:散装CH3NH3PbI3制备通过旋涂由刮刀synthetized并沉积在溶液中的前体和胶态CsPbBr3 NP的。由(S)进行分析两者试样的制备方法和工作条件TEM被适当优化。我们表明,通过一步法生长CH3NH3PbI3薄膜与随机取向构成独立颗粒。地层中的四方钙钛矿薄膜具有良好的粘附性的到下层的TiO 2层,其特征是光致发光的生长方法的结果(PL)发射带为中心在775纳米。基于CsPbBr3胶体纳米颗粒钙钛矿薄膜,其被用作膜的积木,通过沉积过程保存,即使相邻的NP之间观察到小的间隙。 CsPbBr3 NP的晶体结构是立方晶,这对于光学性能有利的,因为其最佳带隙。的吸收和PL光谱在薄膜和CsPbBr3 NP的胶体溶液测量两者都非常相似,这表明薄膜的良好的均匀性和不存在的NP的聚集。然而,需要一个特定的护理中提供了结构的研究,以避免长的电子照射时间,甚至在80千伏的电压低,作为观察到通过铅SEG以分解材料

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