Self-assembling of dispersed systems marangoni mechanism of particle aggregation

被引:0
|
作者
Ishikawa, M
机构
关键词
D O I
暂无
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
The two-dimensional self-assembling of mono-dispersed particles which were immersed in deuterium water was investigated under the sedimentation-free configuration. The diameters of particles ranged from 3 to 5 mu m. Since particles were floated on the free surface of deuterium water, the behaviour of particles could be observed using an optical microscope. The light scattering method was applied to measure Brownian movements of particles. The observation cell was designed to control the temperature and the evaporation rate of water by helium gas. The processes of self-assembling were very similar to those of crystal growth. Particle-particle interactions due to Brownian movements, clustering and growth of ordered lattices were observed. Using the light scattering method, the frequency spectra of Brownian particles were measured with respect to ordered and disordered configurations. It was clarified that the frequencies of phonon-like vibrations were a function of the gas-flow rate. The results indicate, the evaporation is essential to the assembling of particles. Fraction-like vibrations on percolation clusters were confirmed and explained by the formation of the clusters with long range correlation length at the critical density. The assembling forces were explained based on the interaction of Marangoni flows which were induced by evaporative cooling on the particles. The study reports a unique mechanism of particle self-assembling due to Marangoni flow.
引用
收藏
页码:15 / 21
页数:7
相关论文
共 50 条
  • [21] Self-assembling cyclic systems as drug carriers
    Banerjee, A.
    Yadav, A.
    APPLIED NANOSCIENCE, 2013, 3 (06) : 515 - 528
  • [22] Self-assembling cyclic systems as drug carriers
    A. Banerjee
    A. Yadav
    Applied Nanoscience, 2013, 3 : 515 - 528
  • [23] VISCOELASTICITY AND DIFFUSION OF SELF-ASSEMBLING SYSTEMS AT EQUILIBRIUM
    LEQUEUX, F
    COURTY, F
    PHYSICS LETTERS A, 1991, 158 (05) : 197 - 202
  • [24] Self-assembling living systems with functional nanomaterials
    Popovic, Zoran
    Otter, Matthias
    Calzaferri, Gion
    De Cola, Luisa
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2007, 46 (32) : 6188 - 6191
  • [25] Self-assembling polyphosphazene systems and their biomedical applications
    Andrianov, Alexander
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2017, 254
  • [26] Self-assembling systems: Mining a rich vein
    Menger, Fredric M.
    Shi, Lei
    Rizvi, Syed A. A.
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2010, 344 (02) : 241 - 246
  • [27] Bicontinuous surfaces in self-assembling amphiphilic systems
    Schwarz, U
    Gompper, G
    MORPHOLOGY OF CONDENSED MATTER: PHYSICS AND GEOMETRY OF SPATIALLY COMPLEX SYSTEMS, 2002, 600 : 107 - 151
  • [28] Conformational switching in self-assembling mechanical systems
    Saitou, K
    IEEE TRANSACTIONS ON ROBOTICS AND AUTOMATION, 1999, 15 (03): : 510 - 520
  • [29] A framework for analyzing and creating self-assembling systems
    Bhalla, Navneet
    Jacob, Christian
    2007 IEEE SWARM INTELLIGENCE SYMPOSIUM, 2007, : 281 - +
  • [30] ΔTt-mechanism in the design of self-assembling structures
    Urry, DW
    Hayes, L
    Luan, CX
    Gowda, DC
    McPherson, D
    Xu, J
    Parker, T
    SELF-ASSEMBLING PEPTIDE SYSTEMS IN BIOLOGY, MEDICINE AND ENGINEERING, 2001, : 323 - 342