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March 10, 2026Angewandte Chemie0 citations

Synergistic Tri‐emission Enabling Single‐Component White Organic Light‐Emitting Transistors

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XTXiangyu TanSZSheng‐hong ZhaoQLQingbin Li

Key Points

  • The aim is to develop a novel material for white organic light-emitting transistors (OLETs) that combines high charge mobility with effective light emission.
  • Designed and synthesized 2,6-bis(dibenzo[b,d]thiophen-3-yl)anthracene (DTA) material.
  • Evaluated photoluminescence quantum yield and charge carrier mobility of DTA.
  • Constructed single-component OLET devices to assess emission characteristics.
  • DTA exhibits a photoluminescence quantum yield of 35%.
  • Charge carrier mobility of DTA is measured at 5.8 cm²/V·s.
  • Demonstrates broad-spectrum white electroluminescence with specific color coordinates.
  • Emissions from monomer, excimer, and electromer can be dynamically modulated by gate voltage.

Abstract

ABSTRACT White organic light‐emitting transistors (OLETs) are poised to be pivotal components in next generation smart displays. However, their development is hindered by the scarcity of ideal materials that concurrently exhibit high charge carrier mobility and efficient white‐light emission. Herein, we present a novel molecular design strategy that achieves white electroluminescence by synergistically harnessing emissions from the monomer, excimer, and electromer within a single material. Guided by this approach, we designed and synthesized 2,6‐bis(dibenzob,dthiophen‐3‐yl)anthracene (DTA), which exhibits a photoluminescence quantum yield of 35% and a high saturation hole mobility of 5.8 cm 2 V −1 s −1 . Remarkably, in single‐component OLET devices, DTA manifests an additional electromer emission. The combination of this red‐shifted electromer band with the monomer and excimer emissions results in broad‐spectrum white electroluminescence, with Commission Internationale de l'Eclairage coordinates of (0.3030, 0.3558). Moreover, the relative intensities of these three emissive species can be dynamically modulated by the gate voltage, enabling real‐time tuning of the white color temperature and achieving a high color‐rendering index. This work establishes a new design paradigm for high‐mobility white‐light emitters and represents a significant stride toward practical single‐component white OLETs.

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Cite This Study

Tan et al. (2026) studied this question.

synapsesocial.com/papers/69af956970916d39fea4ce2bhttps://doi.org/10.1002/ange.202524614
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