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首页> 外文期刊>RSC Advances >Preparing and testing the reliability of long-afterglow SrAl2O4:Eu2+, Dy3+ phosphor flexible films for temperature sensing
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Preparing and testing the reliability of long-afterglow SrAl2O4:Eu2+, Dy3+ phosphor flexible films for temperature sensing

机译:准备和测试长余脂SRAL2O4的可靠性:EU2 +,DY3 +磷光体柔性薄膜用于温度传感

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摘要

Owing to its stability and environment-friendly properties, the SrAl _(2) O _(4) :Eu ~(2+) , Dy ~(3+) (SAOED) phosphor has attracted major scientific interest. With various applications, such as in emergency signage, luminous paints, and traffic signs, it can have a considerable impact on everyday activities. However, SrAl _(2) O _(4) easily undergoes hydrolysis in the presence of atmospheric moisture. To remedy this, we prepared a phosphor film by spin coating to improve its water resistance. The SAOED was coated with epoxy resin glue without destroying the SrAl _(2) O _(4) crystals. A series of reliability tests were conducted on the phosphor films and bare phosphors: high-temperature and high-humidity (HT) tests, thermal-cycling (TC) tests, and xenon lamp aging (XLG) tests. Then, the crystal phase, surface morphology, photoluminescence (PL), afterglow decay, and temperature-dependent PL were analyzed. The X-ray diffraction patterns show that the hydrolysis reaction of SAOED occurred easily, with the SrAl _(2) O _(4) phase becoming the Sr _(3) Al _(2) (OH) _(12) phase and SrAl _(3) O _(5) (OH) generated under HT tests. The PL intensity of the thin film of SAOED decreased 57.2%, 79.3%, and 98.8% after HT tests, XLG tests for 168 h, and TC tests with 10 repetitions from 233 K to 423 K, respectively. Moreover, the afterglow decay time of the SAOED phosphor film was longer than that of bare phosphors. The developed flexible films are excellent candidates for temperature sensing because they exhibit temperature-dependent PL intensity and are highly sensitive to surrounding temperature variation 300–420 K. Thus, SAOED films with stable luminescent signals can be used in energy-efficient, long-lasting temperature-sensing devices, which, apart from being environment-friendly, play a role in improving public safety infrastructure.
机译:由于其稳定性和环保性质,SRAL _(2)O _(4):EU〜(2+),DY〜(3+)(SAOD)磷光体吸引了主要的科学兴趣。通过各种应用,例如在紧急标牌,发光涂料和交通标志中,它可以对日常活动产生相当大的影响。然而,SRAL _(2)O _(4)在大气水分的存在下容易经历水解。为了解决这个问题,我们通过旋涂制备了磷光体薄膜以改善其耐水性。用环氧树脂胶囊涂有SaodEd,不会破坏SLAL _(2)O _(4)晶体。在荧光粉和裸磷光体上进行一系列可靠性测试:高温和高湿度(HT)测试,热循环(TC)测试和氙灯老化(XLG)测试。然后,分析了晶相,表面形态,光致发光(PL),余辉衰减和温度相关的PL。 X射线衍射图案表明,SaoEd的水解反应容易发生,SRα(2)O _(4)相变为Sr _(3)Al _(2)(OH)_(12)阶段和SLAL _(3)O _(5)(OH)在HT测试下生成。在HT试验后,SaoEd薄膜的PL强度降低了57.2%,79.3%和98.8%,XLG试验168小时,分别从233 k到423 k重复的TC试验。此外,恶性荧光粉的余辉衰减时间比裸磷光体的衰减时间长。开发的柔性薄膜是温度感测的优异候选者,因为它们表现出温度依赖性PL强度并且对周围温度变化的高度敏感,因此,具有稳定发光信号的恶气膜可用于节能,长期持久除了环境友好的情况下,温度传感装置在改善公共安全基础设施方面发挥作用。

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