van den Berg A W C, Bromley S T, Flikkema E, Jansen J C
Ceramic Membrane Centre The Pore, Delft University of Technology, Julianalaan 136, 2618BL, Delft, The Netherlands.
J Chem Phys. 2004 Nov 22;121(20):10209-16. doi: 10.1063/1.1808119.
The diffusion of hydrogen in sodium aluminum sodalite (NaAlSi-SOD) is modeled using classical molecular dynamics, allowing for full flexibility of the host framework, in the temperature range 800-1200 K. From these simulations, the self-diffusion coefficient is determined as a function of temperature and the hydrogen uptake at low equilibrium hydrogen concentration is estimated at 573 K. The influence of the cation distribution over the framework on the hydrogen self-diffusion is investigated by comparing results employing a low energy fully ordered cation distribution with those obtained using a less ordered distribution. The cation distribution is found to have a surprisingly large influence on the diffusion, which appears to be due to the difference in framework flexibility for different cation distributions, the occurrence of correlated hopping in case of the ordered distribution, and the different nature of the diffusion processes in both systems. Compared to our previously reported calculations on all silica sodalite (all-Si-SOD), the hydrogen diffusion coefficient of sodium aluminum sodalite is higher in the case of the ordered distribution and lower in case of the disordered distribution. The hydrogen uptake rates of all-Si-SOD and NaSiAl-SOD are comparable at high temperatures (approximately 1000 K) and lower for all-Si-SOD at lower temperatures (approximately 400 K).
在800 - 1200 K的温度范围内,使用经典分子动力学对氢在钠铝方钠石(NaAlSi-SOD)中的扩散进行建模,该模型允许主体骨架充分灵活变形。通过这些模拟,确定了自扩散系数与温度的函数关系,并估计了在573 K下低平衡氢浓度时的氢吸收量。通过比较采用低能量完全有序阳离子分布的结果与使用较无序分布获得的结果,研究了骨架上阳离子分布对氢自扩散的影响。发现阳离子分布对扩散有惊人的巨大影响,这似乎是由于不同阳离子分布下骨架灵活性的差异、有序分布情况下相关跳跃的发生以及两个系统中扩散过程的不同性质。与我们之前报道的关于全硅方钠石(all-Si-SOD)的计算相比,在有序分布的情况下,钠铝方钠石的氢扩散系数较高,而在无序分布的情况下较低。在高温(约1000 K)下,全硅方钠石和NaSiAl-SOD的氢吸收速率相当,而在低温(约400 K)下,全硅方钠石的氢吸收速率较低。