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有机发光晶体管:驱动发光一体化的新型显示技术

官少卿 秦正生 董焕丽

分析测试学报2026,Vol.45Issue(5):917-920,4.
分析测试学报2026,Vol.45Issue(5):917-920,4.DOI:10.12452/j.fxcsxb.25121701

有机发光晶体管:驱动发光一体化的新型显示技术

Organic Light-Emitting Transistor:A Novel Display Technology Integrating Drive and Emission

官少卿 1秦正生 2董焕丽1

作者信息

  • 1. 中国科学院化学研究所有机固体实验室,北京 100190||中国科学院大学 化学科学学院,北京 100049
  • 2. 中国科学院化学研究所有机固体实验室,北京 100190
  • 折叠

摘要

Abstract

The continuous innovation in display technology is crucial for the development of the infor‑mation industry.As an emerging type of monolithic integrated driving and light-emitting device,or‑ganic light-emitting transistor(OLET)have attracted considerable attention due to their integration of the switching/amplification functions of organic field-effect transistors and the light-emitting character‑istics of organic light-emitting diode within a single device architecture.This article reviews the latest advancements in OLET technology in terms of material innovation and device design.In the field of high mobility emissive organic semiconductors,the bottleneck of balancing high mobility with strong luminescence has been successfully overcome through strategies including molecular structure design and aggregation state optimization.In terms of the device performance,leveraging the unique open-plane light-emitting characteristics and gate-voltage modulation mechanism of OLET,highly polar‑ized emission(with a degree of polarization up to 0.97)and ultranarrow spectral emission(with a full width at half maximum as low as 13 nm)have been achieved.These breakthroughs provide a novel technological pathway for the development of next-generation high-performance,multifunctional inte‑grated display technologies,demonstrating the significant potential of OLET in driving the evolution of display technology.

关键词

有机发光晶体管(OLET)/高迁移率发光有机半导体/驱动发光一体化器件/显示技术

Key words

organic light-emitting transistor(OLET)/high mobility emissive organic semiconduc‑tor/monolithically integrated driving and light-emitting device/display technology

分类

数理科学

引用本文复制引用

官少卿,秦正生,董焕丽..有机发光晶体管:驱动发光一体化的新型显示技术[J].分析测试学报,2026,45(5):917-920,4.

基金项目

国家自然科学基金资助项目(52233010,52403342,T2441002) (52233010,52403342,T2441002)

分析测试学报

1004-4957

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