Refined Signal Organic Photodetectors via Transfer Lamination of pH-Controlled PEDOT:PSS for Durable In Situ Stress Monitoring

  • Jeong, Jae Hyun
  • Lim, Jihyun
  • Jang, Woongsik
  • Kim, Byung Gi
  • Kim, Suyeon
  • ... Wang, Dong Hwan
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초록

This paper presents a strategy for noise suppression and stability enhancement of organic photodetectors (OPDs) by introducing pH-neutralized and transfer-laminated poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) as the hole-transporting layer (HTL). Although PEDOT:PSS is widely used as an HTL material, its intrinsic acidity and structural instability hinder the performance of the OPD. Here, imidazole-induced neutralization promotes a linear entangled structure, while transfer lamination enables controlled PSS domain distribution. These structural modifications lead to a favorable energy level alignment for hole transport and improved HTL stability. Enhanced interfacial contact between the photoactive layer and HTL facilitates photocurrent flow and reduces internal noise, yielding high specific detectivity and shot-noise-limited detectivity without bias and under -0.5 V reverse bias. The optimized OPD device also exhibits increased shunt resistance, reduced trap density, and fast response to frequency-specific optical signals with high signal-to-noise and wide frequency bandwidth. An in situ stress monitoring system demonstrates the device's capability for real-time bio signal detection, maintaining stable operation after 360 h of ambient storage. These results confirm the potential use of pH-controlled, transfer-laminated PEDOT:PSS for high-performance, long-term stable OPDs in practical sensing applications.

키워드

PEDOT:PSSconducting polymershole transporting layersorganic photodetectorspH-controlled laminationspecific detectivityPERFORMANCESURFACECELLS
제목
Refined Signal Organic Photodetectors via Transfer Lamination of pH-Controlled PEDOT:PSS for Durable In Situ Stress Monitoring
저자
Jeong, Jae HyunLim, JihyunJang, WoongsikKim, Byung GiKim, SuyeonWang, Dong Hwan
DOI
10.1021/acsami.5c13056
발행일
2025-09
유형
Article
저널명
ACS Applied Materials and Interfaces
17
37
페이지
52435 ~ 52450