Thermally Robust Organic Photodetectors Enabled by Polymer Acceptors with Tunable Rigidity
Artikel i vetenskaplig tidskrift, 2026

Organic photodetectors (OPDs) have emerged as promising candidates for next-generation optoelectronic applications. However, their widespread adoption is hindered by the low thermal stability. This study addresses this issue by investigating the performance of OPDs employing three polymer acceptors: PF5-Y5, PYTS-C2, and PY2TS-C2 paired with the PBDB-T polymer donor. These devices demonstrate significantly improved resistance to thermal stress. After annealing at 150 degrees C for 1 h, the PF5-Y5-based OPDs can maintain a dark current density (J(d)) below 1 & times; 10(-6) A/cm(2) and an external quantum efficiency (EQE) above 50%, leading to a specific detectivity of 1.7 & times; 10(11) Jones. Detailed analysis reveals that the EQE drop in the PF5-Y5-based OPDs is due to decreased electron mobility, and J(d) increases in the PY2TS-C2 and Y6 systems are attributed to enhanced aggregation and phase separation and C-60 and electrode diffusion. These results highlight the advantages of polymer acceptors in enhancing thermal robustness and provide design strategies for developing thermally stable OPDs.

Författare

Zhong-Ze Qu

University of California

Qiaonan Chen

Chalmers, Kemi och kemiteknik, Tillämpad kemi

Hoang Mai Luong

University of California

Chulalongkorn University

Subhrangsu Mukherjee

North Carolina State University

Qunping Fan

Xi'an Jiaotong University

Jordan Fishburn

University of California

Yunyan Lai

University of California

Harald Ade

North Carolina State University

Ergang Wang

Chalmers, Kemi och kemiteknik

Thuc-Quyen Nguyen

University of California

ACS ENERGY LETTERS

2380-8195 (ISSN)

Vol. In Press

Biologiskt nedbrytbara halvledande polymerer för transientelektronik

Formas (2023-01008), 2024-01-01 -- 2026-12-31.

Ämneskategorier (SSIF 2025)

Den kondenserade materiens fysik

DOI

10.1021/acsenergylett.6c01868

Mer information

Senast uppdaterat

2026-09-22