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Low fluorescence crosstalk patterning of quantum dots based on laser drilling and micropore filling
J. Li; K. Zheng; W. Sun; L. Zhu; J. Tao; P. Li; K. Fan; J. Lv; Y. Qin; B. Zhao; Y. Zhao; Y. Chen; J. Liang and W. Wang
2023
发表期刊Applied Physics Letters
ISSN00036951
卷号123期号:10
摘要In this study, a dual-color patterned perovskite quantum dot color conversion layer with a light-blocking matrix was created by combining laser drilling with micropore filling technology. When the blue micro-LED and the quantum dot color conversion layer make contact, the fluorescence crosstalk effect can be simulated to be near zero. The color conversion layers with high color gamut (111.2% of the National Television System Commission) were further confirmed to have outstanding optical isolation performance through experimental observations. This work may have significant advantages for its applications in photonic integration, micro-LED, and near-field displays due to simple operation process, maskless, harmlessness to quantum dots, short process period, and low crosstalk effect. © 2023 Author(s).
DOI10.1063/5.0161855
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收录类别sci ; ei
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文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/67620
专题中国科学院长春光学精密机械与物理研究所
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J. Li,K. Zheng,W. Sun,et al. Low fluorescence crosstalk patterning of quantum dots based on laser drilling and micropore filling[J]. Applied Physics Letters,2023,123(10).
APA J. Li.,K. Zheng.,W. Sun.,L. Zhu.,J. Tao.,...&J. Liang and W. Wang.(2023).Low fluorescence crosstalk patterning of quantum dots based on laser drilling and micropore filling.Applied Physics Letters,123(10).
MLA J. Li,et al."Low fluorescence crosstalk patterning of quantum dots based on laser drilling and micropore filling".Applied Physics Letters 123.10(2023).
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