Adsorption and self-assembly of surfactant/supercritical CO2 systems in confined pores:: A molecular dynamics simulation

被引:10
|
作者
Xu, Zhijun [1 ]
Yang, Xiaoning [1 ]
Yang, Zhen [1 ]
机构
[1] Nanjing Univ Technol, State Key Lab Mat Orientated Chem Engn, Nanjing 210009, Peoples R China
关键词
D O I
10.1021/la7011588
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A coarse-grained molecular dynamics simulation has been carried out to study the adsorption and self-organization for a model surfactant/supercritical CO2 system confined in the slit-shape nanopores with amorphous silica-like surfaces. The solid surfaces were designed to be CO2-philic and CO2-phobic, respectively. For the CO2-philic surface, obviously surface adsorption is observed for the surfactant molecules. The various energy profiles were used to monitor the lengthy dynamics process of the adsorption and self-assembly for surfactant micelles or monomers in the confined spaces. The equilibrium properties, including the morphologies and micelle-size distributions of absorbed surfactants, were evaluated based on the equilibrium trajectory data. The interaction between the surfactant and the surface produces an obvious effect on the dynamics rate of surfactant adsorption and aggregation, as well as the final self-assembly equilibrium structures of the adsorbed surfactants. However, for the CO2-phobic surfaces, there are scarcely adsorption layers of surfactant molecules, meaning that the CO2-phobic surface repels the surfactant molecules. It seems to conclude that the CO2 solvent depletion near the interfaces determines the surface repellence to the surfactant molecules. The effect of the CO2-phobic surface confinement on the surfactant micelle structure in the supercritical CO2 has also been discussed. In summary, this study on the microscopic behaviors of surfactant/Sc-CO2 in confined pores will help to shed light on the surfactant self-assembly from the Sc-CO2 fluid phase onto solid surfaces and nanoporous media.
引用
收藏
页码:9201 / 9212
页数:12
相关论文
共 50 条
  • [11] Self-assembly of reverse micelles in water/surfactant/carbon dioxide systems by molecular simulation
    Salaniwal, S
    Cui, ST
    Cummings, PT
    Cochran, HD
    LANGMUIR, 1999, 15 (16) : 5188 - 5192
  • [12] Solubility and Self-Assembly of Amphiphilic Gradient and Block Copolymers in Supercritical CO2
    Ribaut, Tiphaine
    Oberdisse, Julian
    Annighofer, Burkhardt
    Fournel, Bruno
    Sarrade, Stephane
    Haller, Heike
    Lacroix-Desmazes, Patrick
    JOURNAL OF PHYSICAL CHEMISTRY B, 2011, 115 (05): : 836 - 843
  • [13] Self-assembly of reverse micelles by molecular dynamics simulation
    Cochran, HD
    Salaniwal, S
    Cui, ST
    Cummings, PT
    FOUNDATIONS OF MOLECULAR MODELING AND SIMULATION, 2001, 97 (325): : 183 - 186
  • [14] Molecular dynamics simulation of self-assembly in a nanoemulsion system
    Pirhadi, Somayeh
    Amani, Amir
    CHEMICAL PAPERS, 2020, 74 (08) : 2443 - 2448
  • [15] Molecular dynamics simulation of self-assembly in a nanoemulsion system
    Somayeh Pirhadi
    Amir Amani
    Chemical Papers, 2020, 74 : 2443 - 2448
  • [16] Molecular self-assembly in nonionic surfactant-cyclodextrin systems
    Topchieva, IN
    Karezin, KI
    COLLOID JOURNAL, 1999, 61 (04) : 514 - 519
  • [17] Molecular dynamics simulation of thickening mechanism of supercritical CO2 thickener
    Xue, Ping
    Shi, Jing
    Cao, Xulong
    Yuan, Shiling
    CHEMICAL PHYSICS LETTERS, 2018, 706 : 658 - 664
  • [18] β-Diketones at Water/Supercritical CO2 Interface: A Molecular Dynamics Simulation
    Liu Shuyan
    Chai Jingchun
    Yang Xiaoning
    CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2009, 17 (06) : 990 - 998
  • [19] Calculation of solubility parameters of supercritical CO2 by molecular dynamics simulation
    Luo, Hui
    Wang, Rui
    Fan, Weiyu
    Li, Zhaomin
    Ma, Tao
    Nan, Guozhi
    Shiyou Xuebao, Shiyou Jiagong/Acta Petrolei Sinica (Petroleum Processing Section), 2015, 31 (01): : 78 - 83
  • [20] Solubility of Caffeine in Supercritical CO2: A Molecular Dynamics Simulation Study
    Reddy, Vishwanath
    Saharay, Moumita
    JOURNAL OF PHYSICAL CHEMISTRY B, 2019, 123 (45): : 9685 - 9691