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Silica encapsulated ZnO quantum dot-phosphor nanocomposites:Sol-gel preparation and white light-emitting device application
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作者 梁亚川 刘凯凯 +2 位作者 卢英杰 赵琪 单崇新 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第7期548-555,共8页
ZnO quantum dots (QDs) as an eco-friendly and low-cost material has bright fluorescence, which makes it promising material for healthy lighting and displaying. However, the low fluorescence efficiency and poor stabi... ZnO quantum dots (QDs) as an eco-friendly and low-cost material has bright fluorescence, which makes it promising material for healthy lighting and displaying. However, the low fluorescence efficiency and poor stability of ZnO QDs impede their applications in lighting application. In this work, silica encapsulated ZnO QD-phosphors nanocomposites (ZSPN) have been prepared through a sol-gel synthesis process, where yellow-emitting ZnO QDs and blue-emitting BaMgAl10O17:Eu2+ are employed as the luminescence cores and silica as link between two luminescence materials. Tunable photoluminescence of ZSPN and the white light emission have been achieved through changing mass ratio of both of ZnO QDs and commercial phosphors. The PLQY of the ZSPN can reach 63.7% and they can maintain high luminous in- tensity even the ambient temperature up to 110 ℃ and after 35 h of UV irradiation. In addition, they can keep stable for 40 days. By coating the ZSPN phosphors onto a ultraviolet chip, WLEDs with luminous efficiency of 73.6 lm/W and the color coordinate, correlated color temperature, and color rendering index can reach (0.32, 0.34), 5580 K, and 87, respectively, indicating the bright prospect of the ZSPN phosphors used in healthy lighting. 展开更多
关键词 ZnO QD-phosphors nanocomposites (ZSPN) PHOSPHORS light-emitting diodes
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高效稳定的多色碳纳米颗粒荧光粉:内层极性官能团与外层二氧化硅的协同作用(英文) 被引量:2
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作者 刘凯凯 周蕊 +5 位作者 梁亚川 郭宸孜 徐志堃 单崇新 李林 申德振 《Science China Materials》 SCIE EI CSCD 2018年第9期1191-1200,共10页
纳米碳作为一种资源丰富的环境友好型材料,会产生明亮的多色荧光,成为一种在健康照明与显示领域有前景的材料.然而多色碳纳米粒子荧光粉的荧光效率和稳定性仍然低于预期,这极大地限制了碳纳米粒子的应用.本工作通过内层极性官能团与外... 纳米碳作为一种资源丰富的环境友好型材料,会产生明亮的多色荧光,成为一种在健康照明与显示领域有前景的材料.然而多色碳纳米粒子荧光粉的荧光效率和稳定性仍然低于预期,这极大地限制了碳纳米粒子的应用.本工作通过内层极性官能团与外层二氧化硅的协同作用,制备了高效稳定的多色碳纳米颗粒荧光粉.聚乙二醇6000中的官能团有利于碳纳米粒子的发光,其较低的熔点(64°C)提升了碳纳米粒子的热稳定性,而外层的二氧化硅对荧光粉提供了保护作用.基于这个设计,制备出了量子效率为53.1%,47.4%,43.8%以及42.3%的蓝光、绿光、黄光和红光碳纳米粒子荧光粉,量子效率均为已报道的多色碳纳米粒子荧光粉的最高值.所制备的碳纳米粒子荧光粉展现了良好的热稳定性和时间稳定性,其荧光在100°C和一个月后仍能保持不变.将所制备的碳纳米粒子荧光粉涂覆到紫外芯片上,实现了包括白光在内的多色发光器件.其中,白光器件的流明效率为12 lm W^(-1),色温,色坐标和显色指数分别为6107 K,(0.32,0.33)和89,表明碳纳米粒子荧光粉在照明与显示领域有潜在的应用前景. 展开更多
关键词 极性官能团 热稳定性 碳纳米颗粒 二氧化硅 荧光粉 协同作用 多色 内层
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