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Chemical Analysis of the Interface between Hybrid Organic-Inorganic Perovskite and Atomic Layer Deposited Al2O3

DOI:10.1021/acsami.8b18307 期刊:ACS Applied Materials & Interfaces 出版年份:2019 更新时间:2025-09-23 15:23:52
摘要: Ultrathin metal oxides prepared by atomic layer deposition (ALD) have gained utmost attention as moisture and thermal stress barrier layers in perovskite solar cells (PSCs). We have recently shown that 10 cycles of ALD Al2O3 deposited directly on top of the CH3NH3PbI3-xClx perovskite material, are effective in delivering a superior PSC performance with 18% efficiency (compared to 15% of the Al2O3-free cell) with a long-term humidity-stability of more than 60 days. Motivated by these results, the present contribution focuses on the chemical modification which the CH3NH3PbI3-xClx perovskite undergoes upon growth of ALD Al2O3. Specifically, we combine in situ Infrared (IR) spectroscopy studies during film growth, together with X-ray Photoelectron Spectroscopy (XPS) analysis of the ALD Al2O3/perovskite interface. The IR-active signature of the NH3+ stretching mode of the perovskite undergoes minimal changes upon exposure to ALD cycles, suggesting no diffusion of ALD precursor and co-reactant (Al(CH3)3 and H2O) into the bulk of the perovskite. However, by analyzing the difference between the IR spectra associated with the Al2O3 coated perovskite and the pristine perovskite, respectively, changes occurring at the surface of perovskite are monitored. The abstraction of either NH3 or CH3NH2 from the perovskite surface is observed as deduced by the development of negative N-H bands associated to its stretching and bending modes. The IR investigations are corroborated by XPS study, confirming the abstraction of CH3NH2 from the perovskite surface, whereas no oxidation of its inorganic framework is observed within the ALD window process investigated in this work. In parallel, the growth of ALD Al2O3 on perovskite is witnessed by the appearance of characteristic IR-active Al-O-Al phonon and (OH)-Al=O stretching modes. Based on the IR and XPS investigations, a plausible growth mechanism of ALD Al2O3 on top of perovskite is presented.
作者: Dibyashree Koushik,Lotte Hazendonk,Valerio Zardetto,Vincent Vandalon,Marcel A. Verheijen,Wilhelmus M.M. Kessels,Mariadriana Creatore
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To investigate the chemical modifications that the CH3NH3PbI3-xClx perovskite undergoes upon growth of atomic layer deposited (ALD) Al2O3, focusing on the interface between the perovskite and Al2O3 layers.

The research demonstrates that ALD Al2O3 growth on perovskite involves minimal bulk decomposition but significant surface abstraction of CH3NH2, with no oxidation of the inorganic framework. TMA is more detrimental than H2O. A growth mechanism is proposed where TMA interacts with the perovskite surface, leading to byproduct release and eventual Al2O3 formation. The growth is initially retarded on perovskite compared to Si, suggesting island formation before conformal growth. These insights aid in optimizing ALD for perovskite solar cells.

The study is limited to ALD Al2O3 using TMA and H2O at 80°C on CH3NH3PbI3-xClx perovskite; other precursors, temperatures, or perovskite compositions are not explored. The growth mechanism hypothesis requires further validation, and the island growth behavior on perovskite is not fully explained.

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