Suppressing Noise and Leakage Current in PbS Quantum-Dot Short-Wave Infrared Photodiodes via a PM6 Conjugated Polymer Interlayer

Abstract Defect-mediated leakage at charge-selective contacts fundamentally limits the performance of colloidal quantum dot (QD) short-wave infrared (SWIR) photodiodes. Here, we address this challenge by inserting a thin conjugated polymer (PM6) interlayer between the PbS-EDT hole transport layer and the MoOx electrode. This interlayer suppresses interfacial trap-assisted transport, reduces leakage pathways, and stabilizes charge dynamics, thereby achieving a more regulated interfacial transport regime. Consequently, the PM6-modified devices exhibit a markedly reduced dark current density of 70.1 nA/cm2 at −0.5 V, a high external quantum efficiency of 82.56% (zero bias) at 1300 nm, and a significantly suppressed noise spectral density, leading to an enhanced specific detectivity of 2.62 × 1011 Jones. Our findings establish polymer interlayer engineering as a simple and scalable approach to realize low-noise, high-stability SWIR photodetectors.

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Publication Details

Journal
ACS Applied Electronic Materials
Published
2026-09-12
DOI
https://doi.org/10.1021/acsaelm.6c01644
Primary Topic
Quantum Dots Synthesis And Properties
Type
article
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article

Suppressing Noise and Leakage Current in PbS Quantum-Dot Short-Wave Infrared Photodiodes via a PM6 Conjugated Polymer Interlayer

Shuang Xiao, Fan Fang, Jiaji Cheng, Haodong Tang et al.
ACS Applied Electronic Materials
Quantum Dots Synthesis And Properties
article

Suppressing Noise and Leakage Current in PbS Quantum-Dot Short-Wave Infrared Photodiodes via a PM6 Conjugated Polymer Interlayer

Shuang Xiao, Fan Fang, Jiaji Cheng, Haodong Tang, Jiufeng Wu, Wei Chen, Changji Zheng, Peizhao Liu, Ruikun Pan, Youming Chen
article en

Abstract

Abstract Defect-mediated leakage at charge-selective contacts fundamentally limits the performance of colloidal quantum dot (QD) short-wave infrared (SWIR) photodiodes. Here, we address this challenge by inserting a thin conjugated polymer (PM6) interlayer between the PbS-EDT hole transport layer and the MoOx electrode. This interlayer suppresses interfacial trap-assisted transport, reduces leakage pathways, and stabilizes charge dynamics, thereby achieving a more regulated interfacial transport regime. Consequently, the PM6-modified devices exhibit a markedly reduced dark current density of 70.1 nA/cm2 at −0.5 V, a high external quantum efficiency of 82.56% (zero bias) at 1300 nm, and a significantly suppressed noise spectral density, leading to an enhanced specific detectivity of 2.62 × 1011 Jones. Our findings establish polymer interlayer engineering as a simple and scalable approach to realize low-noise, high-stability SWIR photodetectors.

ACS Applied Electronic Materials
Shenzhen Technology University (CN), Hubei University (CN)
Affordable and clean energy
Openalex Percentile: Top 24%
Quantum Dots Synthesis And Properties
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Suppressing Noise and Leakage Current in PbS Quantum-Dot Short-Wave Infrared Photodiodes via a PM6 Conjugated Polymer Interlayer — Shuang Xiao, Fan Fang, et al. · ACS Applied Electronic Materials (2026) | TGRS Research Map | TGRS