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退火对聚乙烯醇(PVA)薄膜中香豆素106室温发光的影响。

Effect of annealing on the room temperature luminescence of coumarin 106 in PVA films.

作者信息

Alexander Emma, Ceresa Luca, Pham Danh, Gryczynski Zygmunt, Gryczynski Ignacy

机构信息

Department of Physics and Astronomy, Texas Christian University, Fort Worth, TX, 76129, United States of America.

出版信息

Methods Appl Fluoresc. 2023 Nov 2;12(1). doi: 10.1088/2050-6120/ad06dc.

Abstract

We studied the effect of annealing on the luminescence of Coumarin 106 (C106) in poly (vinyl alcohol) films (PVA films). The samples and reference polymer films were treated at temperatures between 100 °C and 150 °C (212 F and 302 F) for various times. After cooling and smoothing, the samples and references were measured at room temperature. We observed that the PVA polymer (reference films) changes its optical properties with annealing at higher temperatures, affecting the baselines in absorption and the backgrounds in emission measurements. This requires precise background subtractions and control of the signal-to-noise ratio. Whereas the fluorescence intensity of C106 in PVA films modestly decreases with annealing, the phosphorescence depends dramatically and progressively increases by many folds. The fluorescence quantum yields and lifetimes decrease with the annealing, which suggests an increase in the non-radiative processes in the singlet excited state S. The increase in the phosphorescence intensities results from increased intersystem crossing (ISC), which also decreases fluorescence. We also studied the effect of annealing on phosphorescence with the directly excited triplet state of C106. In this case, two processes are affected by annealing, S→Tabsorption and T→Sphosphorescence. The long-wavelength excitation (475 nm) avoids PVA polymer excitation. The phosphorescence lifetime decreases with annealing while the phosphorescence intensity increases. These changes suggest that the radiative rate of T→ Sincreases with annealing.

摘要

我们研究了退火对聚(乙烯醇)薄膜(PVA薄膜)中香豆素106(C106)发光的影响。将样品和参考聚合物薄膜在100℃至150℃(212华氏度至302华氏度)之间的温度下处理不同时间。冷却和平整后,在室温下测量样品和参考物。我们观察到,PVA聚合物(参考薄膜)在较高温度下退火时会改变其光学性质,影响吸收基线和发射测量中的背景。这需要精确的背景扣除和信噪比控制。而PVA薄膜中C106的荧光强度随着退火略有下降,磷光则显著且逐渐增加了许多倍。荧光量子产率和寿命随着退火而降低,这表明单重激发态S中的非辐射过程增加。磷光强度的增加是由于系间窜越(ISC)增加,这也会降低荧光。我们还研究了退火对C106直接激发三重态磷光的影响。在这种情况下,两个过程受退火影响,即S→T吸收和T→S磷光。长波长激发(475nm)避免了PVA聚合物激发。磷光寿命随着退火而降低,而磷光强度增加。这些变化表明T→S的辐射速率随着退火而增加。

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