首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Temperature sensing of a plasmonic nanocylinder array by a polymer film containing chameleon complex
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Temperature sensing of a plasmonic nanocylinder array by a polymer film containing chameleon complex

机译:含Chameleon络合物的聚合物膜的等离子体纳米凝集阵列的温度感测

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摘要

Chameleon complex, a coordination polymer containing Eu3+ and Tb3+ as emitting centers, is a temperature sensor whose photoluminescence (PL) intensity ratio between Eu3+ and Tb3+ varies with the temperature. Although the performance of this complex has been verified in a form of powders, it has not been used as a film, which is a commonly used form for various applications. In this study, we fabricate a temperature-sensing thin film by dissolving a chameleon complex powder in poly(methyl methacrylate) (PMMA). The chameleon complex retains the responsivity to temperature after the dispersion in PMMA. The PL intensity ratio changes almost linearly with the temperature in the experimental range of 20 degrees C-40 degrees C. In order to further demonstrate the temperature sensing ability of the film, we deposit the film on a plasmonic periodic array of Al nanocylinders. We simultaneously use two laser lines to excite both localized surface plasmon resonances (LSPRs) hybridized with in-plane diffraction in the array and the chameleon complex in the film. The LSPRs decay into heat increasing the temperature, which is then detected through the PL intensity ratio between Eu3+ and Tb3+. The temperature increase is in agreement with numerical calculations. The results show that the film is applicable for temperature sensing in a local area defined by the excitation spot. (C) 2019 Optical Society of America
机译:Chameleon复合物,含有EU3 +和Tb3 +作为发射中心的配位聚合物,是温度传感器,其光致发光(PL)Eu3 +和Tb3 +之间的强度比随温度而变化。尽管该综合体的性能已经以粉末形式验证,但是尚未用作薄膜,这是各种应用的常用形式。在这项研究中,我们通过将变色膜复合粉末溶解在聚(甲基丙烯酸甲酯)(PMMA)中来制造温度传感薄膜。变色龙复合物在PMMA中分散后保留对温度的响应度。 PL强度比在20摄氏度的实验范围内的温度几乎线性变化,以进一步证明薄膜的温度感测能力,我们将薄膜沉积在Al纳米叶蛋白的等离子体周期阵列上。我们同时使用两条激光线来激发与阵列中的平面内衍射杂交的局部表面等离子体共振(LSPRS)和薄膜中的变色蜥蜴复合物杂交。将LSPRS衰减成热量,随后通过EU3 +和TB3 +之间的PL强度比检测到温度。温度增加与数值计算一致。结果表明,该薄膜适用于由激发斑定义的局域中的温度感测。 (c)2019年光学学会

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