PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
April 15, 2026Advanced Functional Materials0 citations

Perfluoroarene‐Based Interlayers Unlock High External Quantum Efficiency in Planar Heterojunction OPDs

View Full Paper
SBSeyeon BaekPohang University of Science and TechnologySLS. J. LeePohang University of Science and TechnologyJKJubin KangSogang University

Key Points

  • To improve external quantum efficiency while suppressing dark current in organic photodiodes (OPDs) using perfluoroarene interlayers.
  • Utilized perfluoroarene-based spacer layers (2PFB, 4PFB, 6PFB) in planar heterojunction OPDs.
  • Optimized device structure with ITO, HAT-CN, TPD, SubPc, C60, Bphen, and Al.
  • Evaluated exciton dissociation and charge transfer state dissociation efficiency metrics.
  • Integrated OPDs with CMOS readout circuits for practical sensitivity tests.
  • Achieved peak external quantum efficiency (EQE) over 70%.
  • Confirmed a 77.9% increase in sensitivity with monolithic integration of 6PFB-based OPDs.
  • Showed improved exciton dissociation and charge transfer efficiency with minimal loss.

Abstract

ABSTRACT Suppressing dark current while enhancing photocurrent remains a key challenge in organic photodiodes (OPDs). Planar heterojunction (PHJ) OPDs offer low dark current and high phase stability but often suffer from low photocurrent. Here, we present perfluoroarene‐based spacer layers—2PFB, 4PFB, and 6PFB—as a strategy to simultaneously improve exciton dissociation efficiency ( η ed ) and charge transfer state dissociation efficiency ( η cd ). These spacers enhance interfacial band‐bending, boosting η cd with minimal η ed loss. The optimized ITO/HAT‐CN/TPD/SubPc/6PFB(4 nm)/C 60 /Bphen/Al OPD achieves a peak external quantum efficiency (EQE) over 70%. The method is compatible with various donors when favorable Fermi level alignment is present. Furthermore, monolithic integration of 6PFB‐based OPDs on CMOS readout circuits yielded a 77.9% increase in sensitivity, confirming their practical viability. This approach offers a generalizable, effective pathway to overcoming the EQE‐photocurrent trade‐off in PHJ OPDs, representing a significant advancement toward high‐performance, commercially viable organic photodetectors.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Baek et al. (2026) studied this question.

synapsesocial.com/papers/69df2cb9e4eeef8a2a6b1ea5https://doi.org/10.1002/adfm.202517827
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Impact of Interlayer Optimization on the Performance of Flexible, Self‐Powered Organic Photodetectors for Ambient Light‐Based PPG Sensing2025
  2. 2Enhancing Specific Detectivity and Device Stability in Vacuum-Deposited Organic Photodetectors Utilizing Nonfullerene Acceptors2024 · 5 citations
  3. 3Effective Strategy for High‐Performance Organic Photodetectors with Significantly Suppressed Dark Current and Improved Responsivity2024 · 21 citations
  4. 4Bifunctionally Driven Organic Photonic Conversion Devices Facilitated by Minimalistic Synthesis-Based Interfacial Energetic Alignment.2025
  5. 5Unveiling the Role of Fluorination in Suppressing Dark Current and Enhancing Photocurrent to Enable Thick-Film Near-Infrared Organic Photodetectors2025