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Preliminary Molicular Dynamics Simulation Studies of H-Y Zeolite in a Nom-Rigid Zeolite Framework

机译:H-Y分子筛在刚性骨架上的初步分子动力学模拟研究

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Molecular dynamics (MD) simulation of non-rigid H-Y zeolite framework are performed at 298.15 and 5.0 K. Usual bond stretching, bond angle bending, torsional rotational, and non-bonded Lennard-Jones and electrostatic interactions are considered as intraframework interaction potentials. Calculated atomic parameters are in good agreement with the experiment, which indicates the successful reproduction of the framework structure and its motion. Both calculated bond lengths and bond angles are also in good agreement with the experiment except generally for a little longer bond lengths and a little smaller T-O-H bond angles. The calculated overall site occupation of HI keeps the order O(2) > O(3) > O(4) > O(t) at 298.15 K, which is very different from the experimental prediction, O(l) > O(3) > O(2) at 5 K. Calculated IR spectra of the H-Y zeolite framework show that most of the main peaks of the O-H bonds are in the broad region 3700-5000 cm-1 and that the O-T stretching bands appeared in 0-2000 cm-1 and at 2700 cm-1
机译:非刚性H-Y沸石骨架的分子动力学(MD)模拟在298.15和5.0 K下进行。通常的粘结拉伸,粘结角弯曲,扭转旋转以及非粘结的Lennard-Jones和静电相互作用被视为框架内的相互作用电位。计算出的原子参数与实验吻合得很好,表明框架结构及其运动的成功再现。除了通常较长的键长和较小的T-O-H键角外,计算出的键长和键角均与实验良好吻合。计算得出的HI的总位点占用在298.15 K时保持O(2)> O(3)> O(4)> O(t)的顺序,这与实验预测O(l)> O(3)有很大不同)> O(2)在5 K.HY沸石骨架的红外光谱表明,大多数OH键的主峰在3700-5000 cm-1的宽区域内,并且OT拉伸带出现在0- 2000 cm-1和2700 cm-1

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