Sharma V K, Gautam S, Mitra S, Rao Mala N, Tripathi A K, Chaplot S L, Mukhopadhyay R
Solid State Physics Division, Chemistry Division, Bhabha Atomic Research Centre, Mumbai 400 085, India.
J Phys Chem B. 2009 Jun 11;113(23):8066-72. doi: 10.1021/jp9014405.
We report quasielastic neutron scattering (QENS) and molecular dynamics (MD) simulation study of the dynamics of propylene molecules adsorbed in Na-ZSM5 zeolite. MD simulation studies suggest that rotational motion is almost an order of magnitude faster than translational motion. Therefore, spectrometers having different energy resolutions were used to determine the translational and rotational contributions. Translational motion, being slower, was distinctly observed in a narrower window spectrometer while both contribute to the wider one. Diffusion of propylene in the channels of Na-ZSM5 zeolite was found to follow jump diffusion model. Dynamical parameters corresponding to translational diffusion obtained from experiment are found to be consistent with MD simulation. Variation of elastic incoherent structure factor (EISF) suggests that rotational motion of propylene is isotropic. Although at short times the rotational motion was found to be anisotropic, as indicated in the MD simulation depicting restricted channel framework, but at long time it results in isotropic rotational motion.
我们报道了对吸附在Na-ZSM5沸石中的丙烯分子动力学的准弹性中子散射(QENS)和分子动力学(MD)模拟研究。MD模拟研究表明,旋转运动几乎比平移运动快一个数量级。因此,使用具有不同能量分辨率的光谱仪来确定平移和旋转贡献。平移运动较慢,在较窄窗口的光谱仪中能清晰观察到,而在较宽窗口的光谱仪中两者都有贡献。发现丙烯在Na-ZSM5沸石通道中的扩散遵循跳跃扩散模型。从实验中获得的与平移扩散对应的动力学参数与MD模拟结果一致。弹性非相干结构因子(EISF)的变化表明丙烯的旋转运动是各向同性的。尽管在短时间内发现旋转运动是各向异性的,如在描述受限通道框架的MD模拟中所示,但在长时间内它会导致各向同性的旋转运动。