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Electronic States of Nanocrystal Doped with Oxygen and Visible Emission on Black Silicon Prepared by ns-Laser
Zhong-Mei Huang;  Wei-Qi Huang;  Shi-Rong Liu;  Xue-Ke Wu;  Chao-Jian Qin
2017
Source PublicationNanoscale Research Letters
Volume12Issue:1Pages:452
Abstract

We fabricated the black silicon (BS) structures by using nanosecond pulsed laser (ns-laser) in vacuum or in oxygen environment. It is interesting that the enhanced visible emission occurs in the photoluminescence (PL) spectra measured at room temperature and at lower temperature on the BS surface after annealing, in which lasing near 600 nm is observed on the BS surface with Purcell cavity structure. It is demonstrated in the PL spectra analysis that the electronic states in the nanocrystal doped with oxygen play a main role in the visible emission on the BS surface. The origin of the visible emission near 400, 560, or 700 nm is univocally revealed in the PL spectra analysis. A visible emission is promising for the development of the white light device on the BS.

Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/8074
Collection矿床地球化学国家重点实验室
Affiliation1.Institute of Nanophotonic Physics, Guizhou University, Guiyang 550025, China
2.State Key Laboratory of Ore Deposit Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China
Recommended Citation
GB/T 7714
Zhong-Mei Huang;Wei-Qi Huang;Shi-Rong Liu;Xue-Ke Wu;Chao-Jian Qin. Electronic States of Nanocrystal Doped with Oxygen and Visible Emission on Black Silicon Prepared by ns-Laser[J]. Nanoscale Research Letters,2017,12(1):452.
APA Zhong-Mei Huang;Wei-Qi Huang;Shi-Rong Liu;Xue-Ke Wu;Chao-Jian Qin.(2017).Electronic States of Nanocrystal Doped with Oxygen and Visible Emission on Black Silicon Prepared by ns-Laser.Nanoscale Research Letters,12(1),452.
MLA Zhong-Mei Huang;Wei-Qi Huang;Shi-Rong Liu;Xue-Ke Wu;Chao-Jian Qin."Electronic States of Nanocrystal Doped with Oxygen and Visible Emission on Black Silicon Prepared by ns-Laser".Nanoscale Research Letters 12.1(2017):452.
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