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碳 - 氧化锌交替量子点链:静电吸附组装及白光发光器件的应用。

Carbon-ZnO alternating quantum dot chains: electrostatic adsorption assembly and white light-emitting device application.

机构信息

State Key Laboratory of Luminescence and Applications, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, China.

出版信息

Nanoscale. 2018 Apr 19;10(15):7155-7162. doi: 10.1039/c8nr01209a.

Abstract

Aggregation-induced quenching (ACQ) in carbon nanodots (CNDs) impede their applications in solid devices. Herein, the concept of alternating quantum dot (QD) chains was proposed to overcome the common issue of fluorescence quenching in CNDs; in this study, CNDs and ZnO QDs were interlinked to form carbon-ZnO alternating quantum dot chains (CZA-QDCs), which overcame the ACQ of CNDs and hence ensured efficient full-spectrum fluorescence for white light-emitting devices (WLEDs) without excessive blue emission. Under the excitation of 365 nm lines, white emission resulting from the combination of blue emission from the CNDs and yellow emission from the ZnO QDs has been achieved from these powders. The quantum efficiency of the CZA-QDC powders can reach 49% and remain stable for two months. By coating the powders onto an ultraviolet chip as phosphors, WLEDs with a luminous efficiency of 20.1 lm W-1, color coordinate of (0.30, 0.35), correlated color temperature of 5205 K, and a color rendering index of 84 have been fabricated. Due to the relatively high abundance and eco-friendly characteristics of both carbon and ZnO, the results reported herein may provide a promising alternative to fluorescent phosphors that are widely used in WLEDs.

摘要

聚集诱导猝灭(ACQ)会阻碍碳纳米点(CNDs)在固态器件中的应用。在此,提出了交替量子点(QD)链的概念,以克服 CNDs 中荧光猝灭的常见问题;在这项研究中,将 CNDs 和 ZnO QDs 相互连接,形成了碳-ZnO 交替量子点链(CZA-QDCs),克服了 CNDs 的 ACQ,从而确保了高效的全光谱荧光,无需过多的蓝色发射,即可用于白光发光器件(WLEDs)。在 365nm 线的激发下,这些粉末实现了来自 CNDs 的蓝色发射和 ZnO QDs 的黄色发射的组合产生的白色发射。CZA-QDC 粉末的量子效率可达 49%,并能稳定两个月。通过将粉末涂覆到紫外芯片作为荧光粉,制备出了发光效率为 20.1lm W-1、色坐标为(0.30,0.35)、相关色温为 5205K 和显色指数为 84 的 WLEDs。由于碳和 ZnO 的相对丰富和环保特性,本研究结果可能为广泛用于 WLEDs 的荧光粉提供了一种有前途的替代品。

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