Effect of ion partitioning on diffusiophoresis of a soft particle with hydrophobic core

被引:0
|
作者
Partha Sarathi Majee
机构
[1] Birla Institute of Technology Mesra,Department of Mathematics
来源
关键词
Diffusiophoresis; Chemiphoresis; Hydrophobicity; Ion partitioning; Soft particle;
D O I
暂无
中图分类号
学科分类号
摘要
A theoretical study on the diffusiophoresis of a soft particle consisting of a hydrophobic rigid core covered with a charged polymer layer migrating in an electrolyte medium under an imposed concentration gradient is carried out. The dielectric permittivity of the soft layer is considered to be different from that of the adjoining electrolyte medium, yielding the ion partitioning effect due to the self-energy difference of ions. The electrolyte concentration is assumed to be sufficiently high to create a thin Debye layer around the particle so that the particle surface can be treated planer and the curvature effects can be ignored. A general diffusiophoretic mobility expression, which is applied to an arbitrarily charged soft particle with a hydrophobic inner core is derived, considering the ion partitioning effect. The general mobility expression is further approximated under the low particle charge limit to deduce a closed-form analytical solution for the diffusiophoretic mobility of a weakly charged soft particle. A simplified mobility expression obtained with a thinner hydrodynamic screening length consideration is provided as well, which is pertinent to a soft particle with a hydrophilic core in the presence of the ion partitioning effect. The cumulative effects of core hydrophobicity and ion partitioning on the particle motion are illustrated. The hydrophobic core has a strong effect when both the electrophoresis and chemiphoresis parts work in combination. A mobility reversal occurs on reduction of the soft layer permittivity for the case where the electrophoresis and chemiphoresis components oppose each other. The influence of ion partitioning is potent at a larger slip length and a thicker hydrodynamic screening length where the effective charge of the soft particle is high.
引用
收藏
页码:1077 / 1089
页数:12
相关论文
共 50 条
  • [31] POSSIBLE SOFT-CORE EFFECT IN HEAVY-ION COLLISIONS
    MOLITORIS, JJ
    BONASERA, A
    NUOVO CIMENTO DELLA SOCIETA ITALIANA DI FISICA A-NUCLEI PARTICLES AND FIELDS, 1991, 104 (09): : 1355 - 1360
  • [32] Dissolution and Partitioning Behavior of Hydrophobic Ion-Paired Compounds
    C. S. Lengsfeld
    D. Pitera
    M. Manning
    T. W. Randolph
    Pharmaceutical Research, 2002, 19 : 1572 - 1576
  • [33] Dissolution and partitioning behavior of hydrophobic ion-paired compounds
    Lengsfeld, CS
    Pitera, D
    Manning, M
    Randolph, TW
    PHARMACEUTICAL RESEARCH, 2002, 19 (10) : 1572 - 1576
  • [34] Effect of core charge density on the electrophoresis of a soft particle coated with polyelectrolyte layer
    Partha P. Gopmandal
    S. Bhattacharyya
    H. Ohshima
    Colloid and Polymer Science, 2016, 294 : 727 - 733
  • [35] Effect of core charge density on the electrophoresis of a soft particle coated with polyelectrolyte layer
    Gopmandal, Partha P.
    Bhattacharyya, S.
    Ohshima, H.
    COLLOID AND POLYMER SCIENCE, 2016, 294 (04) : 727 - 733
  • [36] ION BINDING AND THE HYDROPHOBIC EFFECT
    EVANS, DF
    NINHAM, BW
    JOURNAL OF PHYSICAL CHEMISTRY, 1983, 87 (24): : 5025 - 5032
  • [37] Space Electroosmotic Thrusters in Ion Partitioning Soft Nanochannels
    Zheng, Jiaxuan
    Jian, Yongjun
    MICROMACHINES, 2021, 12 (07)
  • [38] Effect of Particle Size on Salt-Induced Diffusiophoresis Compared to Brownian Mobility
    McAfee, Michele S.
    Annunziata, Onofrio
    LANGMUIR, 2014, 30 (17) : 4916 - 4923
  • [39] EFFECT OF DIFFUSIOPHORESIS AND THERMOPHORESIS ON OVERALL PARTICLE COLLECTION EFFICIENCY OF SPRAY DROPLET SCRUBBERS
    PILAT, MJ
    PREM, A
    JOURNAL OF THE AIR POLLUTION CONTROL ASSOCIATION, 1977, 27 (10): : 982 - 988
  • [40] CORE-VALENCE PARTITIONING AND QUASI-PARTICLE PSEUDOPOTENTIALS
    SHIRLEY, EL
    MITAS, L
    MARTIN, RM
    PHYSICAL REVIEW B, 1991, 44 (07): : 3395 - 3398