A Comparative Study via Photophysical and Electrical Characterizations on Interfacial and Bulk Exciplex-Forming Systems for Efficient Organic Light-Emitting Diodes

准分子 系统间交叉 有机发光二极管 光致发光 电容 材料科学 光电子学 二极管 荧光 电荷密度 电致发光 量子效率 化学 图层(电子) 激发态 光学 原子物理学 纳米技术 物理化学 物理 电极 量子力学 单重态
作者
Nurul Ridho Al Amin,Kiran Kishore Kesavan,Sajal Biring,Chih‐Chien Lee,Tzu‐Hung Yeh,Tzu‐Yu Ko,Shun‐Wei Liu,Ken‐Tsung Wong
出处
期刊:ACS applied electronic materials [American Chemical Society]
卷期号:2 (4): 1011-1019 被引量:51
标识
DOI:10.1021/acsaelm.0c00062
摘要

An efficient organic light-emitting diode based on the BCzPh:CN-T2T exciplex as an emitting layer (EML) has been fabricated by exploiting charge balance and favorable molecular orientations. To further understand the details of the exciplex-forming mechanism, time-resolved photoluminescence (TRPL), capacitance-voltage (CV), impedance spectroscopy (IS), and transient electroluminescence (EL) measurements were used to probe the photophysical and electrical characteristics of EL devices by incorporating interfacial (BCzPh/CN-T2T) and bulk (BCzPh:CN-T2T) exciplexes as the emitting layer. Interfacial- and bulk-exciplex devices exhibit a maximum external quantum efficiency (EQE) of 7.7 and 26.4%, respectively. The reason for different device performances was rationalized by comparing the accumulated amount of charge density at the EML’s interface responsible for exciplex emission. In addition, the TRPL measurement monitored from short to long wavelengths was used to explore the harvest of nonradiative triplets back to singlets via reverse intersystem crossing and to examine the efficiency of delayed fluorescence. The bulk-exciplex system showed a distinct delayed fluorescence as compared to the interfacial one, which was also corroborated by the observation in the transient EL. The result indicates that the bulk exciplex can reduce the accumulated charge in the EML rapidly, resulting in improvement of EL efficiency. This assumption was further verified by CV and IS measurements. Our results reveal that the accumulated charge density and the bulk resistance of the bulk-exciplex device are much lower as compared to those of the interfacial counterpart device.
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