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氢键液体的超快动力学:正常阿仑尼乌斯或分数斯托克斯-爱因斯坦-德拜旋转扩散弛豫的分子结构依赖性出现。

The ultrafast dynamics of hydrogen-bonded liquids: molecular structure-dependent occurrence of normal arrhenius or fractional Stokes-Einstein-Debye rotational diffusive relaxation.

作者信息

Hunt Neil T, Turner Andrew R, Tanaka Hajime, Wynne Klaas

机构信息

Department of Physics, SUPA, University of Strathclyde, Glasgow G4 0NG, Scotland, United Kingdom.

出版信息

J Phys Chem B. 2007 Aug 16;111(32):9634-43. doi: 10.1021/jp072409h. Epub 2007 Jul 24.

DOI:10.1021/jp072409h
PMID:17645327
Abstract

The ultrafast rotational-diffusive dynamics of the peptide linkage model compounds N-methylacetamide (NMA), acetamide (Ac), and N,N-dimethylacetamide (DMA) have been studied as a function of temperature using optically heterodyne-detected optical Kerr effect (OHD-OKE) spectroscopy. Both NMA and Ac exhibit a non-Arrhenius temperature dependence of the rotational diffusive relaxation time. By contrast, the non-hydrogen-bonding DMA exhibits normal hydrodynamic behavior. The unusual dynamics of NMA and Ac are attributed to the decoupling of single-molecule rotational diffusive relaxation from the shear viscosity via a transition between stick and slip boundary conditions, which arises from local heterogeneity in the liquid due to the formation of hydrogen-bonded chains or clusters. This provides new insight into the structure and dynamics of an important peptide model compound and the first instance of such a phenomenon in a room-temperature liquid. The OHD-OKE responses of carboxylic acids acetic acid (AcOH) and dichloroacetic acid (DCA) are also reported. These, along with the terahertz Raman spectra, show no evidence of the effects observed in amide systems, but display trends consistent with the presence of an equilibrium between the linear and cyclic dimer structures at all temperatures and moderate-to-high mole fractions in aqueous solution. This equilibrium manifests itself as hydrodynamic behavior in the liquid phase.

摘要

利用光学外差检测光学克尔效应(OHD - OKE)光谱,研究了肽键模型化合物N - 甲基乙酰胺(NMA)、乙酰胺(Ac)和N,N - 二甲基乙酰胺(DMA)的超快旋转扩散动力学与温度的关系。NMA和Ac的旋转扩散弛豫时间均表现出非阿仑尼乌斯温度依赖性。相比之下,非氢键结合的DMA表现出正常的流体动力学行为。NMA和Ac的异常动力学归因于单分子旋转扩散弛豫与剪切粘度通过粘滞和滑移边界条件之间的转变而解耦,这种转变源于液体中由于氢键链或簇的形成而产生的局部不均匀性。这为一种重要的肽模型化合物的结构和动力学提供了新的见解,也是室温液体中这种现象的首个实例。还报道了羧酸乙酸(AcOH)和二氯乙酸(DCA)的OHD - OKE响应。这些响应与太赫兹拉曼光谱一起,没有显示出在酰胺体系中观察到的效应的证据,但显示出与在所有温度下以及水溶液中中等至高摩尔分数下线性和环状二聚体结构之间存在平衡相一致的趋势。这种平衡在液相中表现为流体动力学行为。

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