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Suppressing spontaneous polarization of p-GaN by graphene oxide passivation: Augmented light output of GaN UV-LED

机译:通过氧化石墨烯钝化抑制p-GaN的自发极化:增强GaN UV-LED的光输出

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摘要

GaN-based ultraviolet (UV) LEDs are widely used in numerous applications, including white light pump sources and high-density optical data storage. However, one notorious issue is low hole injection rate in p-type transport layer due to poorly activated holes and spontaneous polarization, giving rise to insufficient light emission efficiency. Therefore, improving hole injection rate is a key step towards high performance UV-LEDs. Here, we report a new method of suppressing spontaneous polarization in p-type region to augment light output of UV-LEDs. This was achieved by simply passivating graphene oxide (GO) on top of the fully fabricated LED. The dipole layer formed by the passivated GO enhanced hole injection rate by suppressing spontaneous polarization in p-type region. The homogeneity of electroluminescence intensity in active layers was improved due to band filling effect. As a consequence, the light output was enhanced by 60% in linear current region. Our simple approach of suppressing spontaneous polarization of p-GaN using GO passivation disrupts the current state of the art technology and will be useful for high-efficiency UV-LED technology.
机译:GaN基紫外线(UV)LED广泛用于许多应用中,包括白光泵浦光源和高密度光学数据存储。然而,一个臭名昭著的问题是由于空穴激活差和自发极化导致的p型传输层中的空穴注入速率低,导致发光效率不足。因此,提高空穴注入率是迈向高性能UV-LED的关键一步。在这里,我们报告了一种抑制p型区域自发极化以增加UV-LED的光输出的新方法。这可以通过在完全制造的LED顶部简单钝化氧化石墨烯(GO)来实现。钝化GO形成的偶极层通过抑制p型区域的自发极化提高了空穴注入率。由于带填充效应,改善了活性层中电致发光强度的均匀性。结果,在线性电流区域中光输出提高了60%。我们使用GO钝化抑制p-GaN自发极化的简单方法破坏了现有技术水平,将对高效UV-LED技术有用。

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