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一种与 CsPbI:EuI 集成的溅射 Gig-Lox TiO 海绵用于半透明钙钛矿太阳能电池。

A Sputtered Gig-Lox TiO Sponge Integrated with CsPbI:EuI for Semitransparent Perovskite Solar Cells.

作者信息

Spampinato C, Calogero G, Mannino G, Valastro S, Smecca E, Arena V, La Magna P, Bongiorno C, Fazio E, Alberti A

机构信息

National Research Council-Institute for Microelectronics and Microsystems (CNR-IMM), Zona IndustrialeStrada VIII no. 5, Catania 95121, Italy.

Dipartimento di Scienze Matematiche ed Informatiche, Scienze Fisiche e Scienze della Terra (MIFT), Università Degli Studi di Messina, Messina 98166, Italy.

出版信息

J Phys Chem C Nanomater Interfaces. 2025 Aug 31;129(36):16338-16346. doi: 10.1021/acs.jpcc.5c03520. eCollection 2025 Sep 11.

Abstract

In this study, we propose a novel approach where in an innovative porous grazing incidence atomic flux coupled with local oxidation (gig-lox) TiO electron transport layer (ETL), deposited by sputtering, is integrated with a fully inorganic CsPbI:EuI perovskite. This combination is used as a photoactive layer in semitransparent perovskite solar cells (ST-PSC). The solvent-free, scalable porous oxide sponge-like in structure, is produced via a grazing-incidence Ti flux that undergoes localized progressive oxidation. The sponge offers ≈50% volume porosity that is available for perovskite infiltration. The result of the oxide-perovskite integration is a double-layer struc made of a perovskite-filled sponge covered by a cap of pure perovskite. The material has unique optical properties and structure as attested by spectroscopic ellipsometry and X-ray diffraction analyses. The double-layer structure exhibits semitransparency, and its reduced photoluminescence (PL) intensity relative to that of a single perovskite layer indicates efficient charge carrier injection into the porous TiO. In perspective, the layer can be used in PSC as demonstrated by simulations.

摘要

在本研究中,我们提出了一种新颖的方法,即通过溅射沉积一种创新的多孔掠入射原子通量与局部氧化(gig-lox)TiO电子传输层(ETL),并将其与全无机CsPbI:EuI钙钛矿相结合。这种组合被用作半透明钙钛矿太阳能电池(ST-PSC)中的光活性层。这种无溶剂、结构类似海绵的可扩展多孔氧化物,是通过掠入射Ti通量进行局部渐进氧化产生的。这种海绵具有约50%的体积孔隙率,可用于钙钛矿渗透。氧化物-钙钛矿集成的结果是形成了一种双层结构,由填充钙钛矿的海绵和覆盖在其上的纯钙钛矿帽组成。通过光谱椭偏仪和X射线衍射分析证明,该材料具有独特的光学性质和结构。双层结构呈现半透明性,相对于单层钙钛矿层,其光致发光(PL)强度降低,表明电荷载流子有效地注入到多孔TiO中。从长远来看,如模拟所示,该层可用于PSC。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3559/12434809/0de343fd055e/jp5c03520_0001.jpg

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