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具有长操作和存储寿命的混合钝化红色有机发光二极管。

Hybrid Passivated Red Organic LEDs with Prolonged Operation and Storage Lifetime.

机构信息

Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices, Institute of Functional Nano & Soft Materials (FUNSOM), Soochow University, Suzhou 215123, China.

Institute of Organic Optoelectronics, Jiangsu Industrial Technology Research Institute (JITRI), Suzhou 215123, China.

出版信息

Molecules. 2022 Apr 19;27(9):2607. doi: 10.3390/molecules27092607.

Abstract

In addition to mobile and TV displays, there is a trend of organic LEDs being applied in niche markets, such as microdisplays, automobile taillights, and photobiomodulation therapy. These applications mostly do not require to be flexible in form but need to have long operation lifetimes and storage lifespans. Using traditional glass encapsulation may not be able to fulfill the rigorous product specification, and a hybrid encapsulation method by combining glass and thin-film encapsulation will be the solution. Conventional thin-film encapsulation technology generally involves organic and inorganic multilayer films that are thick and have considerable stress. As a result, when subjected to extreme heat and stress, the film easily peels off. Herein, the water vapor transmission rate (WVTR) of a 2 µm silicon nitride film prepared at 85 °C is less than 5 × 10 g/m/day and its stress is optimized to be 23 MPa. Red organic LEDs are passivated with the hybrid encapsulation, and the lifetime reaches nearly 10 years if the LED is continuously driven at an initial luminance of 1000 cd/m. In addition, a storage lifespan of over 17 years is achieved.

摘要

除了移动和电视显示屏外,有机发光二极管还在微显示器、汽车尾灯和光生物调节治疗等利基市场中得到应用。这些应用大多数不需要具有灵活的形式,而是需要具有长的工作寿命和存储寿命。使用传统的玻璃封装可能无法满足严格的产品规格,因此需要采用玻璃和薄膜封装相结合的混合封装方法。传统的薄膜封装技术通常涉及到有机和无机多层膜,这些膜较厚且具有相当大的应力。因此,当受到极端的热和应力时,薄膜容易剥落。在此,在 85°C 下制备的 2 µm 氮化硅薄膜的水汽透过率(WVTR)小于 5×10 g/m/day,其应力被优化至 23 MPa。红色有机发光二极管采用混合封装进行钝化,如果以初始亮度 1000 cd/m 连续驱动,其寿命可达近 10 年。此外,还实现了超过 17 年的存储寿命。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a93/9099473/91723cfac421/molecules-27-02607-g001.jpg

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