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使用碲化镉量子点实现香豆素掺杂聚甲基丙烯酸甲酯基质中的协同荧光及显著红移用于发光聚光器二维位置传感

Synergistic Fluorescence with Significant Red Shift in Coumarin-Doped PMMA Matrices Using CdTe Quantum Dots for Luminescent Concentrator 2D Position Sensing.

作者信息

Alyami Mohammed, El-Bashir Samah

机构信息

Department of Physics, College of Science and Humanities in Al-Kharj, Prince Sattam Bin Abdulaziz University, Al-Kharj, 11942, Saudi Arabia.

Department of Physics, Faculty of Science, Benha University, Benha, 13518, Egypt.

出版信息

J Fluoresc. 2025 Feb 13. doi: 10.1007/s10895-025-04153-w.

Abstract

Luminescent concentrators (LCs) with dimensions of 15 × 10 × 0.3 cm were fabricated and calibrated as high-precision non-imaging position sensors for wide-area detecting applications. The plates were prepared using PMMA/chloroform solutions doped with 10⁻⁴ wt% coumarin dye (MACROLEX Fluorescent Red G) and varying concentrations of 3.5 nm CdTe quantum dots (QDs). Characterization techniques, including XRD, UV-vis absorption, and fluorescence polarization spectroscopy, revealed significant enhancements in photophysical properties with increasing CdTe QDs concentrations. At 0.8 wt%, a giant redshift of 58 nm and fluorescence quantum yield improvement from 90.05 to 94.76% were achieved. Fluorescence polarization measurements confirmed this concentration as optimal, with the highest fluorescence anisotropy. Preliminary evaluations of the proposed LC position sensors demonstrated excellent sensitivity (99.75%) across the horizontal (± 1 mm) and vertical (0-50 mm) displacement ranges in 10-micron increments. The obtained results endorsed the potential of luminescent concentrators as efficient position sensors, for achieving sustainable development goals regarding industrial growth and smart cities development.

摘要

制备了尺寸为15×10×0.3厘米的发光聚光器(LCs),并将其校准为用于广域检测应用的高精度非成像位置传感器。这些板是使用掺杂有10⁻⁴ wt%香豆素染料(MACROLEX荧光红G)和不同浓度3.5纳米碲化镉量子点(QDs)的聚甲基丙烯酸甲酯/氯仿溶液制备的。包括X射线衍射、紫外可见吸收和荧光偏振光谱在内的表征技术表明,随着碲化镉量子点浓度的增加,光物理性质有显著增强。在0.8 wt%时,实现了58纳米的巨大红移,荧光量子产率从90.05%提高到94.76%。荧光偏振测量证实该浓度为最佳,具有最高的荧光各向异性。对所提出的LC位置传感器的初步评估表明,在水平(±1毫米)和垂直(0 - 50毫米)位移范围内,以10微米增量测量时,传感器具有出色的灵敏度(99.75%)。所获得的结果证实了发光聚光器作为高效位置传感器的潜力,有助于实现关于工业增长和智慧城市发展的可持续发展目标。

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