Department of Chemistry, Columbia University, New York, New York 10027, USA.
J Chem Phys. 2009 Dec 28;131(24):244513. doi: 10.1063/1.3277141.
We quantify spatial and temporal heterogeneity in supercooled glycerol at T=T(g)+14 K employing a widefield detection scheme and using rubrene as the probe molecule. We describe how microscopy configuration affects measured intensity, linear dichroism, and the resulting autocorrelation function. Rotational relaxation times tau(c) of 241 probe molecules are measured, and we find spatial heterogeneity over almost three orders of magnitude present at this temperature. An approach for detecting temporally heterogeneous molecules and quantifying exchange times is introduced. Of molecules that can be assessed, approximately 15% display evidence of temporal heterogeneity-changes of tau(c) during the measurement-that are detected with the analysis technique employed. Exchanges between dynamically disparate environments occur rarely but in the proportion expected given the rarity of very slowly rotating molecules present. Heterogeneous molecules are characterized by persistence and exchange times. Median exchange and persistence times of the molecules identified as heterogeneous relative to glycerol's structural relaxation time tau(alpha) are found to be tau(ex)/tau(alpha)=202 and tau(pers)/tau(alpha)=405, respectively. These results are discussed in the context of values of exchange times that have been determined in other experiments.
我们采用宽场检测方案,使用并五苯作为探针分子,在 T=T(g)+14 K 下定量研究过冷甘油的时空异质性。我们描述了显微镜配置如何影响测量强度、线二色性以及由此产生的自相关函数。测量了 241 个探针分子的旋转弛豫时间 tau(c),我们发现在此温度下存在几乎三个数量级的空间异质性。引入了一种用于检测随时间变化的异质分子并量化交换时间的方法。在所评估的分子中,约有 15%显示出随时间变化的 tau(c)的证据,这是通过所采用的分析技术检测到的。在非常缓慢旋转的分子很少存在的情况下,动态差异环境之间的交换发生的频率很低,但比例与预期相符。异质分子的特征是存在持久性和交换时间。与甘油的结构弛豫时间 tau(alpha)相比,被确定为异质的分子的平均交换和持久时间分别为 tau(ex)/tau(alpha)=202 和 tau(pers)/tau(alpha)=405。这些结果在其他实验中确定的交换时间值的背景下进行了讨论。