State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, P. R. China.
Nano Lett. 2021 Feb 10;21(3):1500-1507. doi: 10.1021/acs.nanolett.0c04858. Epub 2021 Feb 1.
Solution-processed perovskites as emerging semiconductors have achieved unprecedented milestones in sensor optoelectric devices. Stability along with the device noise issues are the major obstacle for photodetectors to compete with the traditional devices. Here, we demonstrated that l-ascorbic acid (l-AA) as a polyhydroxy ester can coordinate with the amino group of formamidine cations (FA) through multiple hydrogen bond interactions to stabilize the perovskite, which protect the FA ions from nucleophile attack and effectively suppress the degradation of FA ions, improving the perovskite stability and suppressing the device noise to below 0.3 pA Hz with a large linear dynamic range of 239 dB. The dual functions of l-AA enable the perovskite photodetector to have a high detectivity of 10 Jones. The self-powered device works with no energy consumption and maintains an undegraded performance over 1200 h of inspection at ambient conditions, which is promising for infrastructure construction, signal sensing, and real-time information delivery.
溶液处理的钙钛矿作为新兴半导体,在传感器光电设备方面取得了前所未有的里程碑。稳定性以及器件噪声问题是光电探测器与传统器件竞争的主要障碍。在这里,我们证明了抗坏血酸(l-AA)作为一种多羟基酯可以通过多个氢键相互作用与甲脒阳离子(FA)的氨基配位,从而稳定钙钛矿,防止 FA 离子受到亲核攻击,并有效地抑制 FA 离子的降解,提高钙钛矿的稳定性,并将器件噪声抑制在 0.3 pA Hz 以下,具有 239 dB 的大线性动态范围。l-AA 的双重功能使钙钛矿光电探测器具有高达 10 琼斯的高探测率。自供电器件无需消耗能量,在环境条件下检查 1200 小时后性能仍未下降,有望用于基础设施建设、信号传感和实时信息传递。