Department of Chemistry, National University of Rio Cuarto, Postal Agency #3, X5804BYA Río Cuarto, Argentina.
J Phys Chem A. 2010 Jul 15;114(27):7326-30. doi: 10.1021/jp102136e.
C343, a common molecular probe utilized in solvation dynamics experiments, was studied in homogeneous media. Absorption, emission, and (1)HNMR spectroscopies were used to investigate the behavior of C343 in benzene and in benzene/n-heptane mixtures. We demonstrate the implications of the medium polarity, measured as the Kamlet-Taft polarity-polarizability (pi*) parameter, in the C343 inter/intramolecular hydrogen bond (H-bond) interactions and the role that this interaction plays in the dimerization process of the dye. In pure benzene, the dimer prevails because the intermolecular H-bond interaction is favored. On the other hand, as the n-heptane content increases the intramolecular H-bond is the strongest and the C343 monomer is favored. As the polarity of the medium decreases, the solvophobic interaction makes that C343 monomer species experiences a more complicated aggregation process beyond the simple monomer dimer equilibrium present in pure benzene. Thus, the addition of n-heptane to the mixture yields a C343 higher-order aggregates species. Thus, our work reveals the importance that the medium has on the behavior of a widespread dye used as chromophore for very different systems such as homogeneous and microheterogenous media. This is very important since the use of chromophores without understanding its chemistry can induce artifacts into the interpretation of solvation dynamics in heterogeneous environments, in particular, those provided by biological systems such as proteins. Considerable care in choosing and characterizing the system is required to analyze the results fully.
C343 是一种常用于溶剂动力学实验的常见分子探针,在均相介质中进行了研究。我们使用吸收、发射和(1)HNMR 光谱学来研究 C343 在苯和苯/正庚烷混合物中的行为。我们证明了介质极性(以 Kamlet-Taft 极性极化率(pi*)参数来衡量)对 C343 分子内/分子间氢键(H 键)相互作用的影响,以及这种相互作用在染料二聚化过程中所起的作用。在纯苯中,由于有利于分子间氢键相互作用,二聚体占优势。另一方面,随着正庚烷含量的增加,分子内氢键最强,C343 单体占优势。随着介质极性的降低,疏溶剂相互作用使得 C343 单体物种经历了一种比纯苯中存在的简单单体二聚体平衡更为复杂的聚集过程。因此,向混合物中添加正庚烷会产生 C343 的高级聚集体物种。因此,我们的工作揭示了介质对广泛用作发色团的染料的行为的重要性,这些染料用于非常不同的系统,如均相和微异相介质。这非常重要,因为在不了解其化学性质的情况下使用发色团可能会导致在异相环境(特别是蛋白质等生物系统提供的环境)中对溶剂动力学的解释产生假象。需要仔细选择和表征系统,以充分分析结果。