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多孔表面荧光碳化硅的白光发射。

White Light Emission from Fluorescent SiC with Porous Surface.

机构信息

Department of Photonics Engineering, Technical University of Denmark, DK-2800, Kgs, Lyngby, Denmark.

Center for Electron Nanoscopy, Technical University of Denmark, Fysikvej 307, DK-2800, Kgs, Lyngby, Denmark.

出版信息

Sci Rep. 2017 Aug 29;7(1):9798. doi: 10.1038/s41598-017-10771-7.

Abstract

We report for the first time a NUV light to white light conversion in a N-B co-doped 6H-SiC (fluorescent SiC) layer containing a hybrid structure. The surface of fluorescent SiC sample contains porous structures fabricated by anodic oxidation method. After passivation by 20 nm thick AlO, the photoluminescence intensity from the porous layer was significant enhanced by a factor of more than 12. Using a porous layer of moderate thickness (~10 µm), high-quality white light emission was realized by combining the independent emissions of blue-green emission from the porous layer and yellow emission from the bulk fluorescent SiC layer. A high color rendering index of 81.1 has been achieved. Photoluminescence spectra in porous layers fabricated in both commercial n-type and lab grown N-B co-doped 6H-SiC show two emission peaks centered approximately at 460 nm and 530 nm. Such blue-green emission phenomenon can be attributed to neutral oxygen vacancies and interface C-related surface defects generated dring anodic oxidation process. Porous fluorescent SiC can offer a great flexibility in color rendering by changing the thickness of porous layer and bulk fluorescent layer. Such a novel approach opens a new perspective for the development of high performance and rare-earth element free white light emitting materials.

摘要

我们首次报道了一种在含有混合结构的 N-B 共掺杂 6H-SiC(荧光 SiC)层中的 NUV 光到白光的转换。荧光 SiC 样品的表面包含通过阳极氧化法制造的多孔结构。在通过 20nm 厚的 AlO 进行钝化之后,多孔层的光致发光强度显著增强了 12 倍以上。通过使用具有适中厚度(约 10μm)的多孔层,通过组合来自多孔层的蓝绿色发射和来自块状荧光 SiC 层的黄色发射,实现了高质量的白光发射。实现了 81.1 的高显色指数。在商业 n 型和实验室生长的 N-B 共掺杂 6H-SiC 中制造的多孔层中的光致发光光谱显示出两个发射峰,中心约在 460nm 和 530nm。这种蓝绿色发射现象可归因于在阳极氧化过程中产生的中性氧空位和界面 C 相关的表面缺陷。多孔荧光 SiC 可以通过改变多孔层和块状荧光层的厚度来提供很大的显色灵活性。这种新方法为开发高性能和无稀土元素的白光发射材料开辟了新的视角。

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