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首页> 外文期刊>ACS applied materials & interfaces >Highly Efficient Microcavity Organic Light-Emitting Devices with Narrow-Band Pure UV Emission
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Highly Efficient Microcavity Organic Light-Emitting Devices with Narrow-Band Pure UV Emission

机译:具有窄带纯UV发射的高效微腔有机发光器件

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Ultraviolet organic light-emitting devices (UVO-LEDs) may combine the tunability properties of organic materials through modifying the molecular structure and the advantages such as large-area, low-cost, and facile to realize high-performance UV sources. In the state-of-the-art UVOLEDs, the external quantum efficiencies (EQE) are more than 3%, but only a few have achieved pure UV emission and could not compromise the durability and irradiance at the same time. Portable compact UV sources with a narrow band made significant achievements in biomedical science and forensic appraisal. The microcavity effect is useful for achieving the desired narrow peak emission. In this study, asymmetric structural design with a specific distributed Bragg reflector (DBR) structure was employed to achieve narrow-band pure UV emission microcavity UVOLEDs (mu C UVOLEDs). These mu C UVOLEDs can realize tunable wavelength from 366 to 400 nm, with a full width at half maximum (FWHM) of 9.95-15.2 nm and a maximum irradiance of 2.79-5.63 mW/cm(2). Also, the durability of the mu C UVOLED has been considered, which presents a lifetime of 63.2 h under an irradiance of 0.016 mW/cm(2). Moreover, the ability to identify 100 RMB with an efficient mu C UVOLED has also been demonstrated. This investigation not only demonstrates the encouraging potential of narrow-band pure UVOLEDs but also provides a feasible strategy for the optimal design of itC UVOLEDs by utilizing the asymmetric structure.
机译:紫外线有机发光器件(UVO-LED)可以通过改变分子结构和大面积,低成本和容易实现以实现高性能UV源的优点来结合有机材料的可随动性特性。在最先进的UVOLED中,外部量子效率(EQE)超过3%,但只有少数人达到纯粹的紫外线排放,并且不能同时损害耐用性和辐照度。具有狭窄乐队的便携式紧凑型UV来源在生物医学科学和法医评估中取得了重大成就。微胶囊效应对于实现所需的窄峰发射是有用的。在该研究中,采用具有特定分布式布拉格反射器(DBR)结构的非对称结构设计来实现窄带纯UV发射微腔UVoleds(MU C UVOLED)。这些MU C uvoleds可以实现从366到400nm的可调波长,半宽度为9.95-15.2nm,最大辐照度为2.79-5.63 mw / cm(2)。此外,已经考虑了MU COLED的耐久性,其在0.016mW / cm(2)的辐照度下呈现了63.2小时的寿命。此外,还证明了鉴定100元人民币识别100元的uvoled。这项调查不仅展示了窄带纯UVOLED的励志潜力,而且还通过利用不对称结构提供ITC UVOLED的最佳设计的可行策略。

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