Surface charge microscopy: Novel technique for mapping charge-mosaic surfaces in electrolyte solutions

被引:57
|
作者
Yin, Xihui [1 ]
Drelich, Jaroslaw [1 ]
机构
[1] Michigan Technol Univ, Dept Mat Sci & Engn, Houghton, MI 49931 USA
关键词
D O I
10.1021/la801269z
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The effective surface potential, called the potential, is commonly determined from electrophoretic mobility measurements for particles moving in a solution in response to an electric field applied between two electrodes. The situation can be reversed, with the solution being forced to flow through a plug of packed particles, and the streaming potential of the particles call be calculated. A significant limitation of these electrokinetic measurements is that only all average value of the zeta potential/streaming potential is measured-regardless of whether the surface charge distribution is homogeneous or otherwise. However, in real-world situations, nearly all solids (and liquids) of technological significance exhibit Surface heterogeneities. To detect heterogeneities in Surface charge, analytical tools which provide accurate and spatially resolved information about the material surface potential-particularly at microscopic and submicroscopic resolutions-are needed. In this study, atomic force microscopy (AFM) was used to measure the surface interaction forces between a silicon nitride AFM cantilever and a multiphase volcanic rock. The experiments were conducted in electrolyte Solutions with different ionic strengths and pH Values. The colloidal force measurements were carried Out stepwise across the boundary between adjacent phases. At each location, the force-distance Curves were recorded. Surface charge densities were then calculated by fitting the experimental data with a DLVO theoretical model. Significant differences between the Surface charge densities of the two phases and gradual transitions in the surface charge density at the interface were observed. It is demonstrated that this novel technique can be applied to examine one- and two-dimensional distributions of the surface potential.
引用
收藏
页码:8013 / 8020
页数:8
相关论文
共 50 条
  • [41] The Mosaic of Surface Charge in Contact Electrification
    Baytekin, H. T.
    Patashinski, A. Z.
    Branicki, M.
    Baytekin, B.
    Soh, S.
    Grzybowski, B. A.
    SCIENCE, 2011, 333 (6040) : 308 - 312
  • [42] EFFECT OF THE DISCRETENESS OF SURFACE CHARGE ON THE ELECTROSTATIC POTENTIAL OF MACROIONS IN ELECTROLYTE SOLUTIONS
    YALAMOV, YI
    MALAEV, AM
    ZHURNAL FIZICHESKOI KHIMII, 1964, 38 (04): : 963 - 967
  • [43] Mapping Surface Charge of Individual Microdomains with Scanning Ion Conductance Microscopy
    Zhu, Cheng
    Zhou, Lushan
    Choi, Myunghoon
    Baker, Lane A.
    CHEMELECTROCHEM, 2018, 5 (20): : 2986 - 2990
  • [44] ARTIFICIAL MEMBRANES FROM MULTIBLOCK COPOLYMERS .3. PREPARATION AND CHARACTERIZATION OF CHARGE-MOSAIC MEMBRANES
    MIYAKI, Y
    NAGAMATSU, H
    IWATA, M
    OHKOSHI, K
    SE, K
    FUJIMOTO, T
    MACROMOLECULES, 1984, 17 (11) : 2231 - 2236
  • [45] Surface charge mapping with a nanopipette
    Unwin, Patrick R., 1600, American Chemical Society (136):
  • [46] Surface Charge Mapping with a Nanopipette
    McKelvey, Kim
    Kinnear, Sophie L.
    Perry, David
    Momotenko, Dmitry
    Unwin, Patrick R.
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2014, 136 (39) : 13735 - 13744
  • [47] STRUCTURE AND PROPERTIES OF CHARGE-MOSAIC MEMBRANES FROM MODIFIED POLYETHYLENE .1. PREPARATION AND CHARACTERIZATION
    GAJEK, R
    TROCHIMCZUK, W
    JOURNAL OF POLYMER SCIENCE PART B-POLYMER PHYSICS, 1981, 19 (11) : 1663 - 1673
  • [49] STUDIES ON PREPARATION OF WEAK ACID-STRONG BASE TYPE CHARGE-MOSAIC MEMBRANE .2. PREPARATION OF WEAK ACID-STRONG BASE TYPE CHARGE-MOSAIC MEMBRANE IN THIOL-QUARTERNARY AMINE GROUPS
    NAKATUKA, A
    KAZAMA, T
    ISONO, Y
    FUJIMOTO, T
    KATO, K
    SUZUKI, M
    KOBUNSHI RONBUNSHU, 1986, 43 (10) : 627 - 632
  • [50] Imaging photogenerated charge carriers on surfaces and interfaces of photocatalysts with surface photovoltage microscopy
    Chen, Ruotian
    Fan, Fengtao
    Dittrich, Thomas
    Li, Can
    CHEMICAL SOCIETY REVIEWS, 2018, 47 (22) : 8238 - 8262