Collado Pablo, Piñeiro Manuel M, Pérez-Rodríguez Martín
Departamento de Física Aplicada, Universidade de Vigo, E36310 Vigo, Spain.
Instituto de Química Física Blas Cabrera (IQF), (CSIC), C/Serrano 119, 28006 Madrid, Spain.
Nanomaterials (Basel). 2025 Apr 17;15(8):616. doi: 10.3390/nano15080616.
A computational study of the encapsulation of a gaseous mixture of CO and SO in a Type II porous liquid is performed under different conditions. The system is composed of cryptophane-111 molecules dispersed in dichloromethane, and it is described using classic molecular dynamics at atomistic resolution. Gaseous CO tends to almost fully occupy cryptophane-111's cavities during the first phases of simulation, and, afterwards, it is surpassed by SO's tendency for occupation. Calculations are performed at five different temperatures in the range of 273 K-310 K, finding a positive correlation between SO adsorption and temperature. An evaluation of the radial distribution function of SO and CO with respect to cryptophane-111 is employed to quantify the number of captured molecules, and an energy study using Density Functional Theory methods is also performed to evaluate the relative stability of the two gases inside the porous liquid.
在不同条件下,对II型多孔液体中CO和SO气态混合物的封装进行了计算研究。该系统由分散在二氯甲烷中的穴番 - 111分子组成,并使用原子分辨率的经典分子动力学进行描述。在模拟的初始阶段,气态CO倾向于几乎完全占据穴番 - 111的空腔,随后,SO的占据趋势超过了CO。在273 K - 310 K范围内的五个不同温度下进行了计算,发现SO吸附与温度之间存在正相关。利用SO和CO相对于穴番 - 111的径向分布函数评估来量化捕获分子的数量,还使用密度泛函理论方法进行了能量研究,以评估两种气体在多孔液体中的相对稳定性。