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Characteristic Evaluation of Chameleon Luminophore Dispersed in Polymer

机译:变色龙发光体分散在聚合物中的特性评价

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摘要

A temperature-sensitive paint (TSP) using a chameleon luminophore is proposed. The chameleon luminophore was dispersed in isobutyl methacrylate polymer in a toluene solvent to fix it on a sample coupon. Temperature and pressure sensitivities of the chameleon luminophore-based TSP were measured using a spectrofluorophotometer. The emission for each wavelength was confirmed to be dependent on the temperature and pressure. The temperature and pressure sensitivities of the TSP were 0.81–2.8%/K and 0.08–0.12%/kPa, respectively. Higher temperature sensitivity can be obtained using the ratio of emissions from the two lanthanide ions, and . The temperature sensitivity when using the ratio of the emission intensities at 616 nm derived from and at 545 nm derived from was 3.2%/K, which was the highest value in the present study. In addition, the pressure sensitivity for the case using the ratio of the emission intensities at 616 and 545 nm was /kPa. Higher temperature sensitivity and lower pressure sensitivity than that with a single wavelength can be achieved using the ratio of the emission intensities at the two peak wavelengths derived from and .
机译:提出了使用变色龙发光体的热敏涂料(TSP)。将变色龙发光体分散在甲苯溶剂中的甲基丙烯酸异丁酯聚合物中,以将其固定在样品试样上。使用荧光分光光度计测量基于变色龙发光体的TSP的温度和压力敏感性。确认每个波长的发射取决于温度和压力。 TSP的温度和压力敏感度分别为0.81-2.8%/ KPa和0.08-0.12%/ kPa。使用两种镧系元素离子和的发射比例可获得更高的温度敏感性。使用源自616nm和源自545nm的发射强度的比率时的温度灵敏度为3.2%/ K,这是本研究中的最高值。另外,使用616和545nm处的发射强度之比的情况下的压力灵敏度为/ kPa。使用和推导的两个峰值波长处的发射强度之比,可以获得比单波长更高的温度敏感性和更低的压力敏感性。

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