4.6 Article

Kinetics of Wetting and Spreading of Droplets over Various Substrates

期刊

LANGMUIR
卷 33, 期 18, 页码 4367-4385

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.langmuir.6b04094

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资金

  1. European Science Foundation Marie Curie ITN grant MULTIFLOW
  2. European Science Foundation Marie Curie ITN grant CoWet
  3. Engineering and Physical Research Council, UK [EP/J010596/1, EP/D077869/1]
  4. Procter Gamble, USA
  5. European Space Agency under grant FASES
  6. European Space Agency under grant PASTA
  7. European Space Agency under grant MAP EVAPORATION
  8. Engineering and Physical Sciences Research Council [EP/D077869/1] Funding Source: researchfish
  9. EPSRC [EP/D077869/1] Funding Source: UKRI

向作者/读者索取更多资源

There has been a substantial increase in the number of publications in the field of wetting and spreading since 2010. This increase in the rate of publications can be attributed to the broader application of wetting phenomena in new areas. It is impossible to review such a huge number of publications; that is, some topics in the field of wetting and spreading are selected to be discussed below. These topics are as follows: (i) Contact angle hysteresis on smooth homoge neous solid surfaces via disjoining/conjoining pressure. It is shown that the hysteresis contact angles can be calculated via disjoining/conjoining pressure. The theory indicates: that the equilibrium contact angle is closer to a static receding contact angle than to a static advancing-contact angle: (ii) The wetting of deformable substrates, Which is caused by surface forces action in the vicinity of the apparent three phase contact line, leading:: to a deformation on the substrate. (iii) The kinetics of wetting and spreading of non-Newtonian liquid (blood) over porous substrates. We showed that in spite of the enormous complexity of blood; the spreading over porous substrate can be described using a relatively simple model: a power low-shear-thinning non-Newtonim liquid. (iv) The kinetics of spreading of surfactant solutions: In In this part, new results related to various surfactant solution mixtures (synergy and crystallization) are discussed, which shows some possible direction for the,future revealing of superspreadingl phenoinena. (v) The kinetics of spreading of surfactant solutions over hair. Fundamental problems to be, solved are identified.

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