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通过双面表面钝化实现的用于红外上转换检测的灵敏且稳定的锡铅混合钙钛矿光电探测器。

Sensitive and Stable Tin-Lead Hybrid Perovskite Photodetectors Enabled by Double-Sided Surface Passivation for Infrared Upconversion Detection.

作者信息

Zhao Yan, Li Chenglong, Jiang Jizhong, Wang Boming, Shen Liang

机构信息

State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, 2699 Qianjin Street, Changchun, 130012, P. R. China.

出版信息

Small. 2020 Jul;16(26):e2001534. doi: 10.1002/smll.202001534. Epub 2020 May 17.

Abstract

Tin(Sn)-based perovskite is currently considered one of the most promising materials due to extending the absorption spectrum and reducing the use of lead (Pb). However, Sn is easily oxidized to Sn in atmosphere, causing more defects and degradation of perovskite materials. Herein, double-sided interface engineering is proposed, that is, Sn-Pb perovskite films are sandwiched between the phenethylammonium iodide (PEAI) in both the bottom and top sides. The larger organic cations of PEA+ are arranged into a perovskite surface lattice to form a 2D capping layer, which can effectively prevent the water and oxygen to destroy bulk perovskite. Meanwhile, the PEA+ can also passivate defects of iodide anions at the bottom of perovskite films, which is always present but rarely considered previously. Compared to one sided passivation, Sn-Pb hybrid perovskite photodetectors contribute a significant enhancement of performance and stability, yielding a broadband response of 300-1050 nm, a low dark current density of 1.25 × 10 mA cm at -0.1 V, fast response speed of 35 ns, and stability beyond 240 h. Furthermore, the Sn-Pb broadband photodetectors are integrated in an infrared up-conversion system, converting near-infrared light into visible light. It is believed that a double-sided passivation method can provide new strategies to achieving high-performance perovskite photodetectors.

摘要

锡(Sn)基钙钛矿由于扩展了吸收光谱并减少了铅(Pb)的使用,目前被认为是最有前途的材料之一。然而,Sn在大气中很容易被氧化为Sn,导致钙钛矿材料出现更多缺陷并发生降解。在此,提出了双面界面工程,即Sn-Pb钙钛矿薄膜夹在底部和顶部的苯乙铵碘化物(PEAI)之间。较大的有机阳离子PEA+排列在钙钛矿表面晶格中形成二维覆盖层,可有效防止水和氧气破坏块状钙钛矿。同时,PEA+还可以钝化钙钛矿薄膜底部碘离子的缺陷,这种缺陷一直存在但以前很少被考虑。与单面钝化相比,Sn-Pb混合钙钛矿光电探测器在性能和稳定性方面有显著提高,产生300-1050nm的宽带响应,在-0.1V时暗电流密度低至1.25×10 mA cm,响应速度快至35ns,稳定性超过240小时。此外,Sn-Pb宽带光电探测器集成在红外上转换系统中,将近红外光转换为可见光。相信双面钝化方法可以为实现高性能钙钛矿光电探测器提供新策略。

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