Chemistry Department, Faculty of Science, Alexandria University, 2 Bagdad Street, P.O. Box 2, Moharrem Beck, 21321, Alexandria, Egypt.
J Mol Model. 2023 Mar 13;29(4):96. doi: 10.1007/s00894-023-05501-y.
The structured abstract is combined from two parts: CONTEXT: The adsorption behavior of amphetamine (AMP) on the surface of ABW-aluminum silicate zeolite was implemented with a computational depiction. Studies of the electronic band structure (EBS) and density of states (DOS) were conducted to demonstrate transition behavior attributed to aggregate-adsorption interaction. Thermodynamic illustration of the studied adsorbate was studied to investigate the structural behavior of the adsorbate on the surface of the zeolite adsorbent. The best investigated models were assessed with adsorption annealing calculations related to adsorption energy surface. The periodic adsorption-annealing calculation model predicted a highly stable energetic adsorption system based on total energy, adsorption energy, rigid adsorption energy, deformation energy, and dE/d ratio. METHODS: Cambridge sequential total energy package (CASTEP) based on density functional theory (DFT), under Perdew-Burke-Ernzerhof (PBE) basis set, was used to depict the energetic levels of the adsorption mechanism between AMP and ABW-aluminum silicate zeolite surface. DFT-D dispersion correction function was postulated for weakly interacted systems. Structural and electronic elucidations were described with geometrical optimization, FMOs, and MEP analyses. Thermodynamic parameters such as entropy, enthalpy, Gibbs free energy, and heat capacity over temperature dependence studied the conductivity behavior over localized energetic states based on Fermi level and described the disorder degree of the system.
通过计算描述了安非他命 (AMP) 在 ABW-铝硅酸盐沸石表面的吸附行为。进行了电子能带结构 (EBS) 和态密度 (DOS) 的研究,以展示归因于聚集-吸附相互作用的跃迁行为。研究了吸附剂的热力学说明,以研究吸附质在沸石吸附剂表面的结构行为。用与吸附能表面有关的吸附退火计算评估了最佳研究的模型。基于总能量、吸附能、刚性吸附能、变形能和 dE/d 比,周期性吸附-退火计算模型预测了一个基于全能量的高度稳定的能量吸附系统。
基于密度泛函理论 (DFT) 的剑桥顺序总能量包 (CASTEP),采用 Perdew-Burke-Ernzerhof (PBE) 基组,用于描述 AMP 和 ABW-铝硅酸盐沸石表面之间的吸附机制的能级。对于弱相互作用系统,提出了 DFT-D 色散校正函数。结构和电子阐述通过几何优化、FMO 和 MEP 分析进行描述。热力学参数,如熵、焓、吉布斯自由能和热容随温度的依赖性,研究了基于费米能级的局部能态的电导率行为,并描述了系统的无序程度。