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基于温度依赖的苝荧光对局部聚合物玻璃化转变动力学的探测

Temperature dependent perylene fluorescence as a probe of local polymer glass transition dynamics.

作者信息

Han Yixuan, Roth Connie B

机构信息

Department of Physics, Emory University, Atlanta, Georgia 30322, USA.

出版信息

Soft Matter. 2022 Aug 17;18(32):6094-6104. doi: 10.1039/d2sm00552b.

Abstract

We demonstrate how the temperature dependence of perylene's fluorescence emission spectrum doped in bulk polymer matrices is sensitive to the local glass transition dynamics of the surrounding polymer segments. Focusing on the first fluorescence peak, we show that the intensity ratio () = ()/ between the first peak and a self referencing region (SRR) has a temperature dependence resulting from the temperature-dependent nonradiative decay pathway of the excited perylene dye that is influenced by its intermolecular collisions with the surrounding polymers segments. For different polymer matrices, poly(methyl methacrylate) (PMMA), polystyrene (PS), poly(2-vinyl pyridine) (P2VP), and polycarbonate (PC), we demonstrate that () exhibits a transition from a non-Arrhenius behavior above the glass transition temperature of the polymer to an Arrhenius temperature dependence with constant activation energy below the of the polymer matrix, indicating perylene's sensitivity to cooperative α-relaxation dynamics of the polymer matrix. This transition in temperature dependence allows us to identify a perylene defined local peryleneg of the surrounding polymer matrix that agrees well with the known values of the polymers. We define a fluorescence intensity shift factor in analogy with the Williams-Landel-Ferry (WLF) equation and use literature WLF parameters for the polymer matrix to quantify the calibration factor needed to convert the fluorescence intensity ratio to the effective time scale ratio described by the conventional WLF shift factor. This work opens up a new characterization method that could be used to map the local dynamical response of the glass transition in nanoscale polymer materials using appropriate covalent attachment of perylene to polymer chains.

摘要

我们展示了掺杂在本体聚合物基质中的苝的荧光发射光谱的温度依赖性如何对周围聚合物链段的局部玻璃化转变动力学敏感。聚焦于第一个荧光峰,我们表明第一个峰与自参考区域(SRR)之间的强度比()=()/具有温度依赖性,这是由于受激发的苝染料的温度依赖性非辐射衰变途径导致的,该途径受其与周围聚合物链段的分子间碰撞影响。对于不同的聚合物基质,聚甲基丙烯酸甲酯(PMMA)、聚苯乙烯(PS)、聚2-乙烯基吡啶(P2VP)和聚碳酸酯(PC),我们证明()在高于聚合物玻璃化转变温度时表现出非阿累尼乌斯行为,而在低于聚合物基质的时表现出具有恒定活化能的阿累尼乌斯温度依赖性,这表明苝对聚合物基质的协同α-松弛动力学敏感。这种温度依赖性的转变使我们能够确定苝定义的周围聚合物基质的局部苝玻璃化转变温度,该温度与聚合物的已知值非常吻合。我们类似于威廉姆斯-兰德尔-费里(WLF)方程定义了一个荧光强度位移因子,并使用聚合物基质的文献WLF参数来量化将荧光强度比转换为由传统WLF位移因子描述的有效时间尺度比所需的校准因子。这项工作开辟了一种新的表征方法,该方法可用于通过将苝与聚合物链进行适当的共价连接来绘制纳米级聚合物材料中玻璃化转变的局部动力学响应。

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