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Electrochromic Materials: Electrochromic Switch Devices Mixing Small‐ and Large‐Sized Upconverting Nanocrystals (Adv. Funct. Mater. 8/2019)
Advanced Functional Materials ( IF 18.5 ) Pub Date : 2019-02-19 , DOI: 10.1002/adfm.201970045
Eduardo D. Martínez 1 , Carlos D. S. Brites 2 , Luís D. Carlos 2 , Alí F. García-Flores 1 , Ricardo R. Urbano 1 , Carlos Rettori 1, 3
Advanced Functional Materials ( IF 18.5 ) Pub Date : 2019-02-19 , DOI: 10.1002/adfm.201970045
Eduardo D. Martínez 1 , Carlos D. S. Brites 2 , Luís D. Carlos 2 , Alí F. García-Flores 1 , Ricardo R. Urbano 1 , Carlos Rettori 1, 3
Affiliation
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In article number 1807758, Eduardo D. Martínez and co‐workers show a novel way for controlling the luminescence of upconverting nanoparticles. By combining the size‐dependent thermal efficiency of upconversion in nanocrystals with the electric current‐driven heat dissipation in silver nanowire networks, electrothermal devices are fabricated to fine‐tune the emission color, covering a wide range of the chromaticity diagram.
中文翻译:
电致变色材料:混合了小尺寸和大型上转换纳米晶体的电致变色开关设备(Adv。Funct。Mater。8/2019)
在1807758号文章中,Eduardo D.Martínez及其同事展示了一种控制上转换纳米粒子发光的新颖方法。通过将纳米晶体中上转换的尺寸相关热效率与银纳米线网络中电流驱动的散热相结合,制造了电热器件以微调发射色,涵盖了宽范围的色度图。
更新日期:2019-02-19
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中文翻译:
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电致变色材料:混合了小尺寸和大型上转换纳米晶体的电致变色开关设备(Adv。Funct。Mater。8/2019)
在1807758号文章中,Eduardo D.Martínez及其同事展示了一种控制上转换纳米粒子发光的新颖方法。通过将纳米晶体中上转换的尺寸相关热效率与银纳米线网络中电流驱动的散热相结合,制造了电热器件以微调发射色,涵盖了宽范围的色度图。
