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Preferred orientations of organic cations at lead-halide perovskite interfaces revealed using vibrational sum-frequency spectroscopy

机译:使用振动和频谱显示的铅卤化卤化氢钙钛矿界面的有机阳离子的优选取向

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The structure of the interfacial layers of lead halide perovskites is expected to play a crucial role in carrier dynamics and in the performance of perovskite-based devices. However, little is known about the structure and dynamics of perovskite interfaces at the molecular level. In this study, we access molecular dynamics at perovskite interfaces by monitoring the alignment of cations in methylammonium (MA) lead bromide perovskite. For this we apply heterodyne-detected vibrational sum-frequency generation (HD-VSFG) spectroscopy with the help of DFT calculations to a range of thin-film perovskite active layers interfaced with several organic and oxide semiconducting materials. At interfaces with air, glass, TiO2 and NiO transport layers and phenyl-C61-butyric acid methyl ester (PCBM), we observed no signature of cation vibrations, indicating a randomized arrangement of cations. On the other hand, HD-VSFG spectra of 2,2 ',7,7 '-tetrakis[N,N-di(4-methoxyphenyl)amino]-9,9 '-spirobifluorene (Spiro-MeOTAD)/perovskite interfaces exhibited a clear peak corresponding to the ammonium antisymmetric bending mode, indicating that the MA's ammonium moiety is preferentially oriented towards the Spiro-MeOTAD layer with a large portion of MA cations are tilted away from the surface normal. The observed interfacial anisotropy is in contrast with the general picture accepted for bulk perovskite materials. We discuss the potential consequences of the observed phenomena in the context of the local field and carrier injection at the various interfaces within the perovskite solar cells.
机译:预计铅卤化铅钙锌矿界面层的结构将在载体动态和基于钙钛矿的装置的性能中发挥至关重要的作用。但是,关于分子水平的钙钛矿界面的结构和动态知之甚少。在这项研究中,通过监测甲基铵(MA)铅溴化物钙钛矿中的阳离子对准,从钙钛矿界面获得分子动力学。为此,我们在DFT计算的帮助下施加外差检测的振动和频生成(HD-VSFG)光谱到与几种有机和氧化物半导体材料接合的薄膜钙钛矿有源层的一系列。在空气,玻璃,TiO 2和NiO输送层和苯基-C61-丁酸甲酯(PCBM)的界面上,我们观察到阳离子振动的签名,表明阳离子的随机排列。另一方面,2,2',7,7' - 1-Tβ的HD-VSFG光谱[N,N-DI(4-甲氧基苯基)氨基] -9,9'-己基氟烯(Spiro-Meotad)/ Perovskite接口表现出对应于铵反对二核弯曲模式的透明峰,表明MA的铵部分优先朝向螺肌腱层朝向具有大部分MA阳离子倾斜远离表面正常的。观察到的界面各向异性与散装钙钛矿材料所接受的普通图相反。我们讨论了在临床领域的背景下观察到的现象的潜在后果,并在钙钛矿太阳能电池内的各种界面处注射载流子。

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