钝化
量子点
材料科学
响应度
光电探测器
光电子学
热稳定性
红外线的
齿合度
配体(生物化学)
离解(化学)
量子效率
光化学
硫化物
卤素
量子隧道
比探测率
化学
红外探测器
硫化锌
作者
Meiqi Wang,Chen Yin,Yuxuan Du,Huan Liu,Bin Sun
标识
DOI:10.1021/acs.jpclett.5c03183
摘要
Large-sized lead sulfide (PbS) colloidal quantum dots (CQDs) face significant stability challenges in near-infrared applications due to increased surface active sites. While traditional halogen ligands achieve preliminary passivation, they are prone to dissociation under high-temperature operating conditions, leading to rapid device performance degradation. This study proposes an aromatic bidentate ligand passivation strategy based on 2-picolinic acid (2-PCA). The device demonstrates an external quantum efficiency (EQE) of 35% at 1650 nm wavelength, with responsivity and normalized detectivity reaching 0.46 A/W and 3.58 × 10 11 jones, respectively representing a 2.33-fold improvement over conventional halogen-passivated devices. Under thermal stress at 180 °C for 2 h, devices with 2-PCA ligands retain approximately 90% of their initial normalized EQE, marking a 15-fold improvement in stability compared to devices using halogen ligands (PbX 2, X = Br –, I – ), which undergo nearly complete failure. This aromatic bidentate ligand passivation strategy provides a new pathway for developing high-performance infrared photodetectors with enhanced thermal stability.
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