光电效应
光电探测器
碘化物
光电子学
材料科学
化学
无机化学
作者
Guangyou Liu,Chuntian Qiu,Bingbing Tian,Xiangning Pan,Dong Ding,Yu Chen,Can Ren,Tingchao He,Yumeng Shi,Chenliang Su,Ying Li,Yanxia Gao,Dianyuan Fan
标识
DOI:10.1021/acsaelm.9b00466
摘要
Two-dimensional (2D) organic–inorganic hybrid perovskites (OIHPs) have recently drawn great interest due to their easy synthesis and excellent photoelectric properties. With tunable bandgaps, 2D OIHPs have been widely investigated for use in optoelectronic sensors, photodetectors, and solar cells. In this work, we synthesized three types of 2D perovskites with different organic chains, (CH3(CH2)3NH3)2PbI4 (C4, (BA)2PbI4), (CH3(CH2)5NH3)2PbI4 (C6, (HA)2PbI4), and (CH3(CH2)7NH3)2PbI4 (C8, (OA)2PbI4), and investigated their photoelectric properties. With increasing organic chain length, the interlayer spacing, bandgaps, and stability in air increased correspondingly. In addition, tunable optoelectronic properties were achieved when these three perovskites with different organic chain cations were employed to fabricate photodetectors. The results provide an effective method for synthesizing various OIHPs via tuning different organic cations and are helpful to broaden the applications of OIHPs in photoelectric devices.
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