Single-Component Photomultiplication-Type Photodetector Based on Donor–Acceptor Copolymer with Bias-Tunable Broadband to Narrowband Response

Abstract All-polymer photodetectors, owing to their remarkable advantages of flexibility and mechanical durability, exhibit demonstrated potential for application in the field of wearable technology. Nevertheless, the frequently employed double-component active layer structure is susceptible to performance degradation during long-term use. Consequently, a copolymer PM6-co-TTY6 possessing both donor and acceptor properties was designed and synthesized. The single-component active layer devices based on PM6-co-TTY6 exhibit pronounced photomultiplication characteristics. The maximum external quantum efficiency (EQEmax) of PM6-co-TTY6 device with thin active layer reaches 365% or 336% under a bias voltage of +5 V or −5 V, respectively. Remarkably, the device shows bias-tunable spectral response with increasing active layer thickness: a narrowband response (800–900 nm) with a EQEmax of 25% and a narrow full width at half maximum (FWHM) of 30 nm under negative bias, while a broadband response (300–900 nm) under positive bias. At this stage, the device can be switched between broadband and narrowband detection modes by reversing the polarity of the applied bias.

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Publication Details

Journal
ACS Applied Polymer Materials
Published
2026-09-04
DOI
https://doi.org/10.1021/acsapm.6c02279
Primary Topic
Organic Electronics and Photovoltaics
Type
article
Field-Weighted Citation Impact
0.00

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article

Single-Component Photomultiplication-Type Photodetector Based on Donor–Acceptor Copolymer with Bias-Tunable Broadband to Narrowband Response

Guicun Qi, Wenqiang Qiao, Jiawei Liu, Shijia Gao et al.
ACS Applied Polymer Materials
Organic Electronics and Photovoltaics
article

Single-Component Photomultiplication-Type Photodetector Based on Donor–Acceptor Copolymer with Bias-Tunable Broadband to Narrowband Response

Guicun Qi, Wenqiang Qiao, Jiawei Liu, Shijia Gao, Xin Wang, Sai Zhang
article en

Abstract

Abstract All-polymer photodetectors, owing to their remarkable advantages of flexibility and mechanical durability, exhibit demonstrated potential for application in the field of wearable technology. Nevertheless, the frequently employed double-component active layer structure is susceptible to performance degradation during long-term use. Consequently, a copolymer PM6-co-TTY6 possessing both donor and acceptor properties was designed and synthesized. The single-component active layer devices based on PM6-co-TTY6 exhibit pronounced photomultiplication characteristics. The maximum external quantum efficiency (EQEmax) of PM6-co-TTY6 device with thin active layer reaches 365% or 336% under a bias voltage of +5 V or −5 V, respectively. Remarkably, the device shows bias-tunable spectral response with increasing active layer thickness: a narrowband response (800–900 nm) with a EQEmax of 25% and a narrow full width at half maximum (FWHM) of 30 nm under negative bias, while a broadband response (300–900 nm) under positive bias. At this stage, the device can be switched between broadband and narrowband detection modes by reversing the polarity of the applied bias.

ACS Applied Polymer Materials
Dalian University of Technology (CN), China General Nuclear Power Corporation (China) (CN), Beijing Chemical Industry Research Institute (China) (CN)
Fundamental Research Funds for the Central Universities
Openalex Percentile: Top 20%
Organic Electronics and Photovoltaics
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Single-Component Photomultiplication-Type Photodetector Based on Donor–Acceptor Copolymer with Bias-Tunable Broadband to Narrowband Response — Guicun Qi, Wenqiang Qiao, et al. · ACS Applied Polymer Materials (2026) | TGRS Research Map | TGRS