Extending the Operational Lifetime of Electrochemiluminescence Devices by Installing a Floating Bipolar Electrode

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초록

Electrochemiluminescence (ECL) holds significant promise for the development of cost-effective light-emitting devices because of its simple structure. However, conventional ECL devices (ECLDs) have a major limitation of short operational lifetimes, rendering them impractical for real-world applications. Typically, the luminescence of these devices lasts no longer than a few minutes during operation. In the current study, a novel architecture is provided for ECLDs that addresses this luminescence lifespan issue. The device architecture features an ECL active layer between two coplanar driving electrodes and a third floating bipolar electrode. The inclusion of the floating bipolar electrode enables modulating the electrical-field distribution within the active layer when a bias is applied between the driving electrodes. This, in turn, enables the use of opaque yet electrochemically stable noble metals as the driving electrodes while allowing ECL light to escape through the transparent floating bipolar electrode. A significant extension on operational lifetime is achieved, defined as the time required for the initial luminance (>100 cd m(-2)) to decrease by 50%, surpassing 1 h. This starkly contrasts the short lifetime (<1 min) attained by ECLDs in a conventional sandwich-type architecture with two transparent electrodes. These results provide simple strategies for developing durable ECL-based light-emitting devices.

키워드

device architecture; electrochemiluminescence; light-emitting device; operational lifetime; CURRENT-DENSITY DISTRIBUTIONS; ELECTROGENERATED CHEMILUMINESCENCE; ION GELS; CORROSION; DISPLAYS; VOLTAGE; DRIVEN
제목
Extending the Operational Lifetime of Electrochemiluminescence Devices by Installing a Floating Bipolar Electrode
저자
Yee, Hyeono; Lee, Jong Ik; Park, Dong Mok; Jung, Keonhee; Lee, Seunghan; Kim, Nam Hun; Kim, Jungwook; Kim, Hyeong Jun; Kang, Moon Sung
DOI
10.1002/smll.202307190
발행일
2024-04
유형
Article
저널명
Small
권
20
호
15