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利用调制梯度自旋回波测量多孔介质中流体的低频速度相关谱

Low-frequency velocity correlation spectrum of fluid in a porous media by modulated gradient spin echo.

作者信息

Stepisnik J, Callaghan P T

机构信息

University of Ljubljana, Department of Physics, FMF and Institute J. Stefan, Jadranska 19, 1000, Ljubljana, Slovenia.

出版信息

Magn Reson Imaging. 2001 Apr-May;19(3-4):469-72. doi: 10.1016/s0730-725x(01)00269-7.

Abstract

In addition to the fast correlation for local stochastic motion, the molecular velocity correlation function in a fluid enclosed within the pore boundaries features a slow long time-tail decay. Here we present its study by the NMR modulated gradient spin-echo method (MGSE) [1] on a system of water trapped in the space between the closely packed polystyrene beads. With MGSE pulse sequence, a repetitive train of RF pulses with interspersed gradient pulses periodically modulates the spin phase. It gives the spin echo attenuation proportional to a value of the molecular velocity correlation spectrum at the modulation frequency. Covering the frequency range between Hz and MHz, it is a complement to the quasi-elastic neutron scattering, and so a suitable technique for the investigation of low frequency molecular dynamics in fluids. In our experiment, it enables to extract the low frequency correlation spectrum of water molecules confined in porous media. The function exhibits a negative long time-tail characteristic (a low frequency decay of the spectrum), which can be interpreted as a molecular back scattering on boundaries. The results can be well fitted with the spectrum calculated from the solution of the Langevin equation for restricted diffusion (which exhibits an exponential decay) [2] as well as with the spectrum obtained when simulating the hydrodynamics of molecular motion constrained by capillary walls (which gives an algebraic decay) [3]. Despite much work on theories and simulation, which predict slow negative long time tail of molecular velocity correlation dynamics in confined fluids, the obtained velocity correlation spectrum is the first experimental evidence to confirm these effects. The obtained dependence of spin echo attenuation on time, gradient strength and modulation frequency is also the first experimental verification of the recently developed approach to the spin echo in porous media, that uses the spin phase average with the cumulant expansion to get the attenuation as a discord of spin spatial coherence [4].

摘要

除了对局部随机运动的快速关联外,孔边界内封闭流体中的分子速度关联函数还具有缓慢的长时间尾部衰减特征。在此,我们通过核磁共振调制梯度自旋回波方法(MGSE)[1],对紧密堆积的聚苯乙烯珠粒之间空间中所捕获的水系统进行了研究。利用MGSE脉冲序列,一系列穿插有梯度脉冲的重复射频脉冲会周期性地调制自旋相位。这使得自旋回波衰减与调制频率下分子速度关联谱的值成正比。覆盖从赫兹到兆赫兹的频率范围,它是对准弹性中子散射的一种补充,因此是研究流体中低频分子动力学的合适技术。在我们的实验中,它能够提取限制在多孔介质中的水分子的低频关联谱。该函数呈现出负的长时间尾部特征(谱的低频衰减),这可以解释为分子在边界上的反向散射。结果可以很好地拟合由限制扩散的朗之万方程解计算得到的谱(呈现指数衰减)[2],以及模拟受毛细管壁约束的分子运动流体动力学时得到的谱(给出代数衰减)[3]。尽管在理论和模拟方面做了很多工作,这些工作预测了受限流体中分子速度关联动力学的缓慢负长时间尾部,但所获得的速度关联谱是证实这些效应的首个实验证据。所获得的自旋回波衰减对时间、梯度强度和调制频率的依赖性,也是对最近发展的多孔介质中自旋回波方法的首个实验验证,该方法利用自旋相位平均和累积量展开来将衰减作为自旋空间相干的不一致性得到[4]。

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