Britton Melanie M
Magnetic Resonance Research Centre, Department of Chemical Engineering, University of Cambridge, New Museums Site, Pembroke Street, Cambridge, CB2 3RA, UK.
J Phys Chem A. 2006 Apr 20;110(15):5075-80. doi: 10.1021/jp0564851.
The manifestation and development of convection during pattern formation in the 1,4-cyclohexanedione-acid-bromate reaction was investigated using pulsed gradient spin-echo nuclear magnetic resonance (PGSE NMR) experiments. An apparatus was devised that enabled convection to be probed inside an NMR spectrometer and prevented hydrodynamic motion arising from extraneous sources, such as poor mixing or temperature gradients imposed by the experimental setup. PGSE experiments were performed concurrently with magnetic resonance imaging (MRI) experiments to show that convection arose spontaneously from inhomogeneities associated with the chemical patterns. Quantitative data on diffusion coefficients and hydrodynamic velocities are reported.
利用脉冲梯度自旋回波核磁共振(PGSE NMR)实验研究了1,4-环己二酮-酸-溴酸盐反应模式形成过程中对流的表现和发展。设计了一种装置,该装置能够在核磁共振光谱仪内部探测对流,并防止由外部源引起的流体动力运动,例如实验装置造成的混合不良或温度梯度。PGSE实验与磁共振成像(MRI)实验同时进行,以表明对流是由与化学模式相关的不均匀性自发产生的。报告了关于扩散系数和流体动力速度的定量数据。