Liu Shi, Chen Yong-jian, Cui Hai-ning, Sun Sheng-nan, Wang Zi-han, Wang Hai-shui
Guang Pu Xue Yu Guang Pu Fen Xi. 2016 May;36(5):1604-14.
ZnO light-emitting diodes (LEDs) have an enormous potential in lighting applications. The major issue to be resolved is the generating and control of light emissions. This issue arises from the variation and combination in LED wavelength. We found that defect luminescence of ZnO has a varied wide range of wavelength, which suits to an application of LED for white-light generation. We have shown both experimentally and theoretically that defect emission can be used in ZnO systems. This type of defect has the advantage of not requiring extensive and costly factory systems comparing with traditional doped materials and others. We not only propose potential application of native defect luminescence of Zinc Oxide film for white LEDs-flat light sources, but also have some methods to control defect origins, a certain center position and broad range of the emission band of ZnO film in the initial stage. According to different preparing method and certain experiment conditions, variant white such as whitish and bluish-white etc., primary and important colors- blue bands (455, 458 nm), green bands (517, 548 nm), red bands (613, 569 nm) are obtained respectively. This proved that it is a better road to one white light LED with one kind of material -ZnO.
氧化锌发光二极管(LED)在照明应用中具有巨大潜力。需要解决的主要问题是光发射的产生和控制。这个问题源于LED波长的变化和组合。我们发现氧化锌的缺陷发光具有广泛的波长范围,这适合用于白光产生的LED应用。我们已经通过实验和理论证明缺陷发射可用于氧化锌系统。与传统掺杂材料及其他材料相比,这种类型的缺陷具有不需要庞大且昂贵的工厂系统的优势。我们不仅提出了氧化锌薄膜本征缺陷发光在白光LED(平面光源)方面的潜在应用,还拥有一些在初始阶段控制缺陷起源、氧化锌薄膜发射带的特定中心位置和宽范围的方法。根据不同的制备方法和特定实验条件,分别获得了诸如发白光和蓝白色等不同的白色、主要和重要颜色——蓝带(455、458纳米)、绿带(517、548纳米)、红带(613、569纳米)。这证明了用一种材料——氧化锌实现白光LED是一条更好的途径。