Showing 101 - 120 results of 8,334 for search '"colloid"', query time: 0.11s Refine Results
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    Transformable masks for colloidal nanosynthesis by Wang, Zhenxing, He, Bowen, Xu, Gefei, Wang, Guojing, Wang, Jiayi, Feng, Yuhua, Su, Dongmeng, Chen, Bo, Li, Hai, Wu, Zhonghua, Zhang, Hua, Shao, Lu, Chen, Hongyu

    Published 2018
    “…Unlike organic chemistry, where the variety of functional groups provides numerous handles for designing chemical selectivity, colloidal particles have only facets and ligands. Such handles are similar in reactivity to each other, limited in type, symmetrically positioned, and difficult to control. …”
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    Journal Article
  10. 110

    Ultrasound propagation in colloidal dispersions by Sherman, Nigel E.

    Published 1989
    “…This thesis describes apparatus and techniques for making ultrasonic measurements in fluids and applications of them to measurements of ultrasonic parameters in colloidal dispersions. A brief description of the properties and uses of ultrasound propagation in dispersions is followed by an extensive review of theories which relate the particulate properties of the dispersions to the measurable ultrasonic parameters, velocity (c) and attenuation (a [alpha]). …”
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    Thesis
  11. 111

    Interactions of quadrupolar nematic colloids. by Skarabot, M, Ravnik, M, Zumer, S, Tkalec, U, Poberaj, I, Babic, D, Osterman, N, Musevic, I

    Published 2008
    “…We present experimental and theoretical study of colloidal interactions in quadrupolar nematic liquid crystal colloids, confined to a thin planar nematic cell. …”
    Journal article
  12. 112

    Colloidal crystal-fluid interfaces by Dullens, R, Aarts, D, Kegel, W

    Published 2007
    “…In this article we show that colloidal systems are excellent model systems to experimentally study crystal-fluid interfaces. …”
    Conference item
  13. 113
  14. 114

    Dynamics of colloidal particles in ice by Spannuth, M, Mochrie, S, Peppin, S, Wettlaufer, J

    Published 2010
    “…We use X-ray Photon Correlation Spectroscopy (XPCS) to probe the dynamics of colloidal particles in polycrystalline ice. During freezing, the dendritic ice morphology and rejection of particles from the ice created regions of high-particle-density, where some of the colloids were forced into contact and formed disordered aggregates. …”
    Journal article
  15. 115

    Magnetically actuated colloidal microswimmers. by Tierno, P, Golestanian, R, Pagonabarraga, I, Sagués, F

    Published 2008
    “…Here we show that DNA-linked anisotropic colloidal rotors, composed of paramagnetic colloidal particles with different or similar size, achieve controlled propulsion when subjected to a magnetic field precessing around an axis parallel to the plane of motion. …”
    Journal article
  16. 116

    Magnetically Actuated Colloidal Microswimmers. by Tierno, P, Golestanian, R, Pagonabarraga, I, Sagués, F

    Published 2008
    “…Here we show that DNA-linked anisotropic colloidal rotors, composed of paramagnetic colloidal particles with different or similar size, achieve controlled propulsion when subjected to a magnetic field precessing around an axis parallel to the plane of motion. …”
    Journal article
  17. 117

    Frost Heave in Colloidal Soils. by Peppin, S, Majumdar, A, Style, R, Sander, G

    Published 2011
    “…We develop a mathematical model of frost heave in colloidal soils. The theory accountsfor heave and consolidation while not requiring a frozen fringe assumption. …”
    Journal article
  18. 118

    Active colloids and polymer translocation by Cohen, J

    Published 2013
    “…</p> <p>In the first part we introduce active colloids in the context of active matter and focus on the particular case of phoretic colloids. …”
    Thesis
  19. 119

    Dynamics of colloidal particles in ice. by Spannuth, M, Mochrie, S, Peppin, S, Wettlaufer, J

    Published 2011
    “…We use x-ray photon correlation spectroscopy (XPCS) to probe the dynamics of colloidal particles in polycrystalline ice. During freezing, the dendritic ice morphology and rejection of particles from the ice created regions of high particle density, where some of the colloids were forced into contact and formed disordered aggregates. …”
    Journal article
  20. 120

    Pattern formation in colloidal explosions by Straube, A, Louis, A, Baumgartl, J, Bechinger, C, Dullens, R

    Published 2010
    “…We study the non-equilibrium pattern formation that emerges when magnetically repelling colloids, trapped by optical tweezers, are abruptly released, forming colloidal explosions. …”
    Journal article