论文标题

多晶的多晶薄膜中的质地形成

Texture Formation in Polycrystalline Thin Films of All-Inorganic Lead Halide Perovskite

论文作者

Steele, Julian A., Solano, Eduardo, Jin, Handong, Prakasam, Vittal, Braeckevelt, Tom, Yuan, Haifeng, Lin, Zhenni, de Kloe, René, Wang, Qiong, Rogge, Sven M. J., Van Speybroeck, Veronique, Chernyshov, Dmitry, Hofkens, Johan, Roeffaers, Maarten B. J.

论文摘要

在多晶全无机卤化物钙钛矿太阳能电池中控制晶粒方向可以帮助提高转化效率,以达到其热力学极限,但是控制纹理形成的力是模棱两可的。使用Synchrotron X射线衍射,我们报告了多晶CSPBI2.85BR0.15粉末中的中间结构形成,因为它们是从高温立方钙钛矿(α-相)冷却的。四方畸变(\ b {eta} - 相)触发了多晶体集合中的优先晶体学比对,我们建议的特征是通过在多个相邻的晶粒之间通过界面来协调的,这些界面通过选择某些晶格扭曲而不是其他晶格扭曲。然后将外部各向异性施加在正晶(γ-相)CSPBI3-XBRX钙钛矿的多晶薄膜上,通过底物夹紧,揭示了两种基本的单轴纹理。 (i)富含i的膜具有正常的纹理(<100>平面外; <010>和<001>平面内),而(ii)富含br的薄膜形成四方类质地(<110>平面外; <1-10>和<001>和<001> in-flane)。与相对非侵入的因素(例如底物的选择,膜厚度和退火温度)相反,BR掺入通过减少原状晶格失真(使其更像四方类似)来修饰γ-CSPBI3-XBRX晶体结构,并控制了不同的,能量偏爱的质地的质感,并控制多个质感的薄膜。

Controlling grain orientations within polycrystalline all-inorganic halide perovskite solar cells can help increase conversion efficiencies toward their thermodynamic limits, however the forces governing texture formation are ambiguous. Using synchrotron X-ray diffraction, we report meso-structure formation within polycrystalline CsPbI2.85Br0.15 powders as they cool from a high-temperature cubic perovskite (α-phase). Tetragonal distortions (\b{eta}-phase) trigger preferential crystallographic alignment within polycrystalline ensembles, a feature we suggest is coordinated across multiple neighboring grains via interfacial forces that select for certain lattice distortions over others. External anisotropy is then imposed on polycrystalline thin films of orthorhombic (γ-phase) CsPbI3-xBrx perovskite via substrate clamping, revealing two fundamental uniaxial texture formations; (i) I-rich films possess orthorhombic-like texture (<100> out-of-plane; <010> and <001> in-plane), while (ii) Br-rich films form tetragonal-like texture (<110> out-of-plane; <1-10> and <001> in-plane). In contrast to relatively uninfluential factors like the choice of substrate, film thickness and annealing temperature, Br incorporation modifies the γ-CsPbI3-xBrx crystal structure by reducing the orthorhombic lattice distortion (making it more tetragonal-like) and governs the formation of the different, energetically favored textures within polycrystalline thin films.

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