A numerical study of sample preconcentration using ion concentration polarization in single microfluidic channels with dual ion-selective membranes

被引:2
|
作者
Van-Truong Dang [1 ]
Van-Sang Pham [1 ]
机构
[1] Hanoi Univ Sci & Technol, Hanoi, Vietnam
关键词
MULTIPHYSICS SIMULATION; PROTEINS; DEVICES; SYSTEM;
D O I
10.1063/5.0161190
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In this work, we investigated three single straight microchannel designs for the microfluidic biomolecule concentration device, including one traditional single channel and two innovative channels. These microchannels utilized the ion concentration polarization (ICP) phenomenon to preconcentrate very dilute sample biomolecules. By numerically solving coupled equations, Nernst-Planck, Poisson, and Navier-Stokes with appropriate boundary conditions, we provide insight into the ICP phenomenon and the preconcentration mechanism. From the detailed modeling results, we clarify the influence of important working parameters, including electric potentials, the ion-selective membrane dimensions, the channel dimensions, and the ionic strength of buffer solution on the formation of ICP and the enrichment rate of the charged biomolecules. These modeling results for various working conditions of the preconcentration systems highlight the advantage of generating a stronger electric field to preconcentrate biomolecules of two innovative channel designs over the conventional one. The findings are useful tips for the design and optimization of preconcentration microfluidic devices.
引用
收藏
页数:11
相关论文
共 50 条
  • [31] Study on the interactions of fluoride ion with proteins using ion-selective electrode
    Lu Yan
    Wang Gong-Ke
    Zhang Wei-Wei
    ACTA CHIMICA SINICA, 2008, 66 (01) : 10 - 14
  • [32] Ion-Selective Separation Using MXene-Based Membranes: A Review
    Hong, Seunghyun
    Al Marzooqi, Faisal
    El-Demellawi, Jehad K.
    Al Marzooqi, Noora
    Arafat, Hassan A.
    Alshareef, Husam N.
    ACS MATERIALS LETTERS, 2023, 5 (02): : 341 - 356
  • [33] Dynamics of driftless preconcentration using ion concentration polarization leveraged by convection and diffusion
    Baek, Seongho
    Choi, Jihye
    Son, Seok Young
    Kim, Junsuk
    Hong, Seongjun
    Kim, Hee Chan
    Chae, Jong-Hee
    Lee, Hyomin
    Kim, Sung Jae
    LAB ON A CHIP, 2019, 19 (19) : 3190 - 3199
  • [34] A microfluidic chip for ammonium sensing incorporating ion-selective membranes formed by surface tension forces
    Chiang, Ting-Yi
    Lin, Che-Hsin
    RSC ADVANCES, 2014, 4 (01): : 379 - 385
  • [35] Multiphysics analytical and numerical studies of biomolecule preconcentration utilizing ion concentration polarization: a case study of convergent microchannels
    Dang, Van-Truong
    Pham, Van-Sang
    ANALYST, 2024, 149 (08) : 2252 - 2271
  • [36] Desalination by Electrodialysis Using a Stack of Patterned Ion-Selective Hydrogels on a Microfluidic Device
    Gumuscu, Burcu
    Haase, A. Sander
    Benneker, Anne M.
    Hempenius, Mark A.
    van den Berg, Albert
    Lammertink, Rob G. H.
    Eijkel, Jan C. T.
    ADVANCED FUNCTIONAL MATERIALS, 2016, 26 (47) : 8685 - 8693
  • [37] Interfacial ion transfer and current limiting in neutral-carrier ion-selective membranes: A detailed numerical model
    Flavin, Matthew T.
    Freeman, Daniel K.
    Han, Jongyoon
    JOURNAL OF MEMBRANE SCIENCE, 2019, 572 : 374 - 381
  • [38] Transport-limited water splitting at ion-selective interfaces during concentration polarization
    Nielsen, Christoffer P.
    Bruus, Henrik
    PHYSICAL REVIEW E, 2014, 89 (04):
  • [39] NMR-STUDY OF THE STATE OF WATER IN ION-SELECTIVE ELECTRODE MEMBRANES
    CHAN, ADC
    HARRISON, DJ
    ANALYTICAL CHEMISTRY, 1993, 65 (01) : 32 - 36
  • [40] STUDY OF BEHAVIOR OF COPPER ION-SELECTIVE ELECTRODES AT SUBMICROMOLAR CONCENTRATION LEVELS
    BLAEDEL, WJ
    DINWIDDI.DE
    ANALYTICAL CHEMISTRY, 1974, 46 (07) : 873 - 877