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      Self-propulsion of a metallic superoleophobic micro-boat.

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          Abstract

          The self-propulsion of a heavy, superoleophobic, metallic micro-boat carrying a droplet of various aqueous alcohol solutions as a fuel tank is reported. The micro-boat is driven by the solutocapillary Marangoni flow. The jump in the surface tension owing to the condensation of alcohols on the water surface was established experimentally. Maximal velocities of the self-propulsion were registered as high as 0.05m/s. The maximal velocity of the center mass of the boat correlates with the maximal change in the surface tension, due to the condensation of alcohols. The mechanism of the self-locomotion is discussed. The phenomenological dynamic model describing the self-propulsion is reported.

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          Author and article information

          Journal
          J Colloid Interface Sci
          Journal of colloid and interface science
          Elsevier BV
          1095-7103
          0021-9797
          Oct 01 2016
          : 479
          Affiliations
          [1 ] Ariel University, Natural Science Faculty, Physics Department, P.O.B. 3, 407000 Ariel, Israel.
          [2 ] Ariel University, Natural Science Faculty, Physics Department, P.O.B. 3, 407000 Ariel, Israel; Ariel University, Engineering Faculty, Chemical Engineering Department, P.O.B. 3, 40700 Ariel, Israel.
          [3 ] Ariel University, Natural Science Faculty, Physics Department, P.O.B. 3, 407000 Ariel, Israel; Ariel University, Engineering Faculty, Chemical Engineering Department, P.O.B. 3, 40700 Ariel, Israel. Electronic address: edward@ariel.ac.il.
          Article
          S0021-9797(16)30431-3
          10.1016/j.jcis.2016.06.066
          27388132
          e1222760-938e-4ab4-9f9b-d2fbe6b2569a
          Copyright © 2016 Elsevier Inc. All rights reserved.
          History

          Marangoni flow,Self-propulsion,Superoleophobic boat,Surface tension

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