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WO3-Based Electrochromic Distributed Bragg Reflector Toward Electrically Tunable Microcavity Luminescent Device
Xiao, L. L.; Lv, Y.; Lin, J.; Hu, Y. S.; Dong, W. J.; Guo, X. Y.; Fan, Y.; Zhang, N.; Zhao, J. L.; Wang, Y. J.; Liu, X. Y.
2018
发表期刊Advanced Optical Materials
ISSN2195-1071
卷号6期号:1页码:8
摘要The electroresponsive WO3-based electrochromic distributed Bragg reflectors (ECDBRs) are fabricated by means of one-step, room temperature glancing-angle electron-beam evaporation. The reflectance and Bragg wavelength of ECDBRs can be precisely and reversibly tailored on a large scale by simply applying a small bias voltage (+/- 1.1 V) due to the electrochromic effect of the WO3 layer, and this unique character is utilized to construct an electrically tunable microcavity luminescent device with embedded green CdSe@ZnS quantum dots (QDs). Therefore, large and reversible modulation in terms of photoluminescence (PL) peak intensity (18-335%), PL peak position (from 510.3 to 525.8 nm), and full width at half maximum (from 21.8 to 11.4 nm) from QDs in microcavity are achieved under electrical stimulus. The results will potentially provide a straightforward voltage-control route toward broadband tunable microcavity electroluminescent and lasing devices.
关键词electrochromic materials luminescence microcavity photonic crystals stimuli-responsive dimensional photonic crystals inverse opal solar-cells mirrors colors Materials Science Optics
DOI10.1002/adom.201700791
收录类别SCI ; EI
引用统计
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/61222
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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Xiao, L. L.,Lv, Y.,Lin, J.,et al. WO3-Based Electrochromic Distributed Bragg Reflector Toward Electrically Tunable Microcavity Luminescent Device[J]. Advanced Optical Materials,2018,6(1):8.
APA Xiao, L. L..,Lv, Y..,Lin, J..,Hu, Y. S..,Dong, W. J..,...&Liu, X. Y..(2018).WO3-Based Electrochromic Distributed Bragg Reflector Toward Electrically Tunable Microcavity Luminescent Device.Advanced Optical Materials,6(1),8.
MLA Xiao, L. L.,et al."WO3-Based Electrochromic Distributed Bragg Reflector Toward Electrically Tunable Microcavity Luminescent Device".Advanced Optical Materials 6.1(2018):8.
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