AbstractAn orange–yellow emitting cationic iridium(III) complex [(ptpy)2Ir(BCP)]PF6 Application of an orange-yellow emitting cationic iridium(Ⅲ) complex in GaN-based warm white light-emitting diodes
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Application of an orange-yellow emitting cationic iridium(Ⅲ) complex in GaN-based warm white light-emitting diodes

机译:橙黄色发射阳离子铱(Ⅲ)配合物在GaN基暖白色发光二极管中的应用

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AbstractAn orange–yellow emitting cationic iridium(III) complex [(ptpy)2Ir(BCP)]PF6(ptpy: 2-(p-tolyl)pyridine; BCP: bathocuproine) was synthesized. [(ptpy)2Ir(BCP)]PF6exhibited high thermal stability with the thermal decomposition temperature (Td) of 375 °C, with the temperature increasing from 20 to 100 °C, the photoluminescent intensity of [(ptpy)2Ir(BCP)]PF6decreased to 79.9%. It can be efficiently excited by blue light (λmax = 457 nm) of GaN chip, and a series of GaN-based light-emitting diodes (LEDs) were fabricated by using it as phosphors blended in silicone at different blending concentrations. At 1.0 wt.%, a cold white LED was obtained, the corresponding color rendering index (CRI) was 77.1, correlated color temperature (CCT) was 6278 K, luminous efficiency (ηL) was 68.4 lm W−1, and Commission Internationale de L’Eclairage (CIE) value was (0.32, 0.25). At 2.0 wt.%, a neutral white LED was obtained, the corresponding CRI was 74.2, CCT was 4737 K,ηLwas 75.4 lm W−1, and CIE value was (0.34, 0.27). At 2.5, 3.0, 4.0 and 5.0 wt.%, four warm white LEDs were obtained, among them, the maximumηLwas 85.8 lm W−1(at 4.0 wt.%), the maximum CRI was 73.7 (at 2.5 wt.%), their CCT changed between 3410 K and 2328 K, the CIE values were (0.37, 0.30), (0.41, 0.34), (0.46, 0.39) and (0.49, 0.41) respectively. The results suggest [(ptpy)2Ir(BCP)]PF6is a promising phosphor candidate for white LEDs, especially for warm white LEDs.
机译: 摘要 橙黄色发射阳离子铱(III)复合物[(ptpy) 2 Ir(BCP)] PF <下标> 6 (ptpy:2-(对甲苯基)吡啶; BCP:浴嘌呤)。 [(ptpy) 2 Ir(BCP)] PF 6 在热分解温度下表现出高热稳定性( T <下标> d )的温度为375°C,随着温度从20升高到100°C,[(ptpy) 2 Ir(BCP)] PF 6的光致发光强度降至79.9%。它可以被GaN芯片的蓝光(λ max = 457nm)有效地激发,并通过将其用作掺入硅树脂中的磷光体来制造一系列GaN基发光二极管(LED)。在不同的混合浓度下。在1.0 wt。%的情况下,获得了冷白色LED,相应的显色指数(CRI)为77.1,相关色温(CCT)为6278 K,发光效率(η L )为68.4 lm W -1 ,国际照明委员会(CIE)值为(0.32,0.25)。在2.0 wt。%处,获得了中性白光LED,相应的CRI为74.2,CCT为4737 K,η L 为75.4 lm W <上标> -1 ,CIE值为(0.34,0.27)。在2.5、3.0、4.0和5.0 wt。%的条件下,获得了四个暖白色LED,其中最大的η L 为85.8 lm W <上标> -1 (4.0 wt。%),最大CRI为73.7(2.5 wt。%),其CCT在3410K和2328K之间变化,CIE值为(0.37,0.30),(分别为0.41、0.34,(0.46、0.39)和(0.49、0.41)。结果表明[(ptpy) 2 Ir(BCP)] PF 6 是白光LED,特别是暖白光LED的有希望的荧光粉候选。

著录项

  • 来源
    《Journal of materials science》 |2018年第2期|1554-1561|共8页
  • 作者单位

    Key Laboratory of Comprehensive Utilization of Mineral Resources in Ethnic Regions, Joint Research Centre for International Cross-Border Ethnic Regions Biomass Clean Utilization in Yunnan, School of Chemistry and Environment, Yunnan Minzu University;

    Key Laboratory of Comprehensive Utilization of Mineral Resources in Ethnic Regions, Joint Research Centre for International Cross-Border Ethnic Regions Biomass Clean Utilization in Yunnan, School of Chemistry and Environment, Yunnan Minzu University;

    Key Laboratory of Comprehensive Utilization of Mineral Resources in Ethnic Regions, Joint Research Centre for International Cross-Border Ethnic Regions Biomass Clean Utilization in Yunnan, School of Chemistry and Environment, Yunnan Minzu University;

    Key Laboratory of Comprehensive Utilization of Mineral Resources in Ethnic Regions, Joint Research Centre for International Cross-Border Ethnic Regions Biomass Clean Utilization in Yunnan, School of Chemistry and Environment, Yunnan Minzu University;

    Key Laboratory of Comprehensive Utilization of Mineral Resources in Ethnic Regions, Joint Research Centre for International Cross-Border Ethnic Regions Biomass Clean Utilization in Yunnan, School of Chemistry and Environment, Yunnan Minzu University;

    Key Laboratory of Comprehensive Utilization of Mineral Resources in Ethnic Regions, Joint Research Centre for International Cross-Border Ethnic Regions Biomass Clean Utilization in Yunnan, School of Chemistry and Environment, Yunnan Minzu University;

    Key Laboratory of Comprehensive Utilization of Mineral Resources in Ethnic Regions, Joint Research Centre for International Cross-Border Ethnic Regions Biomass Clean Utilization in Yunnan, School of Chemistry and Environment, Yunnan Minzu University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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  • 入库时间 2022-08-17 13:43:25

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