Department of Chemistry and Biochemistry, University of Oklahoma, Norman, Oklahoma 73019, USA.
J Phys Chem B. 2010 Jul 8;114(26):8600-5. doi: 10.1021/jp1020142.
Self-diffusion coefficients are measured from -5 to 80 degrees C in a series of linear alcohols using pulsed field gradient NMR. The temperature dependence of these data is studied using a compensated Arrhenius formalism that assumes an Arrhenius-like expression for the diffusion coefficient; however, this expression includes a dielectric constant dependence in the exponential prefactor. Scaling temperature-dependent diffusion coefficients to isothermal diffusion coefficients so that the exponential prefactors cancel results in calculated energies of activation E(a). The exponential prefactor is determined by dividing the temperature-dependent diffusion coefficients by the Boltzmann term exp(-E(a)/RT). Plotting the prefactors versus the dielectric constant places the data on a single master curve. This procedure is identical to that previously used to study the temperature dependence of ionic conductivities and dielectric relaxation rate constants. The energies of activation determined from self-diffusion coefficients in the series of alcohols are strikingly similar to those calculated for the same series of alcohols from both dielectric relaxation rate constants and ionic conductivities of dilute electrolytes. The experimental results are described in terms of an activated transport mechanism that is mediated by relaxation of the solution molecules. This microscopic picture of transport is postulated to be common to diffusion, dielectric relaxation, and ionic transport.
使用脉冲场梯度 NMR,在一系列线性醇中测量自扩散系数,范围为-5 至 80°C。使用补偿 Arrhenius 形式主义研究这些数据的温度依赖性,该形式主义假设扩散系数的 Arrhenius 式表达;然而,该表达式在指数前因子中包含介电常数依赖性。将温度相关的扩散系数缩放为等温扩散系数,以使指数前因子相消,从而计算出激活能 E(a)。通过将温度相关的扩散系数除以玻尔兹曼项 exp(-E(a)/RT)来确定指数前因子。将前因子与介电常数作图将数据置于单个主曲线上。该程序与之前用于研究离子电导率和介电弛豫速率常数的温度依赖性相同。从醇系列中的自扩散系数确定的激活能与从介电弛豫速率常数和稀电解质的离子电导率计算的相同醇系列的激活能非常相似。实验结果根据由溶液分子弛豫介导的激活输运机制来描述。这种输运的微观图景被假定为扩散、介电弛豫和离子输运所共有。