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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Molecular motions in polymer films near the glass transition: a Single molecule study of rotational dynamics
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Molecular motions in polymer films near the glass transition: a Single molecule study of rotational dynamics

机译:接近玻璃化转变的聚合物膜中的分子运动:旋转动力学的单分子研究

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Single molecule spectroscopy was used to measure the rotations of fluorescent probe molecules in thin films of poly(methyl acrylate) and poly(n-butyl methacrylate) just above their glass-transition temperatures. By collecting the polarized fluorescence from isolated probe molecules, the rotational diffusion of single molecules was followed in real time. The autocorrelation of these transients yields a nonexponential decay from which the rotational correlation time can be calculated. Molecules reveal a broad distribution of correlation times, which showed a clear dependence on the length of observation. At short times, the spatially heterogeneous nature of these films was reflected in their wide range of correlation times. At longer times, environmental exchanges caused the correlation times to converge on a limiting bulk value. The dynamics were characterized by three time scales a rotational correlation time (#tau#_c), an environmental exchange time (#tau#_(ex)), and the time scale upon which the distribution of time-averaged single-molecule correlation time sconverged to the ensemble-averaged limit (#tau#_(bulk)). Both #tau#_(ex) and #tau#_(bulk). Both #tau#_(ex) and #tau#_(bulk) were much longer than #tau#_c, with the ensemble average #tau#_(ex) being approximately 20 times longer than the average #tau#_c and #tau#_(bulk) roughly 125 times #tau#_c. All three time scales were found to have the smae relatively weak temperature dependence when measured at temperatures 5, 10, and 15 K above the glass transition.
机译:单分子光谱法用于测量刚好高于其玻璃化转变温度的聚丙烯酸酯和聚甲基丙烯酸正丁酯薄膜中荧光探针分子的旋转。通过从分离的探针分子收集偏振荧光,可以实时跟踪单个分子的旋转扩散。这些瞬变的自相关会产生非指数衰减,从中可以计算出旋转相关时间。分子揭示了相关时间的广泛分布,这显示了对观察时间的明显依赖。在短时间内,这些电影的空间异质性反映在它们广泛的相关时间范围内。在更长的时间,环境交换导致相关时间收敛于极限体积值。动力学的特征在于三个时间尺度,分别是旋转相关时间(#tau#_c),环境交换时间(#tau #_(ex))和时间尺度,在该时间尺度上平均时间的单分子相关时间的分布收敛到整体平均极限(#tau #_(bulk))。 #tau #_(ex)和#tau #_(bulk)。 #tau #_(ex)和#tau #_(bulk)都比#tau#_c长得多,整体平均#tau #_(ex)大约是平均#tau#_c和#tau的20倍tau #_(散装)约125倍#tau#_c。当在比玻璃化转变温度高5、10和15 K的温度下进行测量时,发现这三个时间尺度都具有相对较弱的温度依赖性。

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