材料科学
光电探测器
钙钛矿(结构)
二茂铁
光电子学
反向偏压
纳米技术
化学工程
物理化学
电极
电化学
二极管
工程类
化学
作者
Eun-Young Hong,William D. J. Tremlett,Lucy J. F. Hart,Beier Hu,Zhuoran Qiao,Patipan Sukpoonprom,Sarah Fearn,Edoardo Angela,Matilde Brunetta,Demosthenes C. Koutsogeorgis,N. Kalfagiannis,Davide Nodari,Martyn A. McLachlan,Piers R. F. Barnes,Artem A. Bakulin,Nicholas J. Long,Nicola Gasparini
标识
DOI:10.1002/adfm.202424556
摘要
Abstract Despite the great potential of lead‐halide perovskite photodetectors for broadband photodetection, ion migration in perovskites and parasitic charge injection from adjacent layers remain major challenges, ultimately leading to device failure. Here, the novel use of an ultra‐thin layer of ferrocenyl‐bis‐phenyl‐2‐carboxylate (FcPhc 2 ) is demonstrated as a hole‐blocking layer. It is shown that FcPhc 2 creates an energetic barrier between the perovskite and the electron transport layer, significantly reducing hole injection from the Ag contact. This improvement results in an ultralow noise spectral density of 1.2 × 10 −14 A Hz −1/2 , and a high specific detectivity of 8.1 × 10 12 Jones at −0.5 V and 740 nm. In addition, FcPhc 2 effectively inhibits I − oxidation induced by injected holes and reduces formed I 2 on the perovskite surface, enhancing reverse bias stability. The increase in detectivity and stability does not compromise the high response speed of FcPhc 2 ‐based devices that operate on the scale of 150 ns and 1.3 MHz at −0.5 V in photo‐ and electrical‐responses.
科研通智能强力驱动
Strongly Powered by AbleSci AI