Zang Duyang, Li Jun, Chen Zhen, Zhai Zhicong, Geng Xingguo, Binks Bernard P
Surfactant and Colloid Group, Department of Chemistry, University of Hull , Hull HU6 7RX, United Kingdom.
Langmuir. 2015 Oct 27;31(42):11502-7. doi: 10.1021/acs.langmuir.5b02917. Epub 2015 Oct 16.
Liquid marbles have promising applications in the field of microreactors, where the opening and closing of their surfaces plays a central role. We have levitated liquid water marbles using an acoustic levitator and, thereby, achieved the manipulation of the particle shell in a controlled manner. Upon increasing the sound intensity, the stable levitated liquid marble changes from a quasi-sphere to a flattened ellipsoid. Interestingly, a cavity on the particle shell can be produced on the polar areas, which can be completely healed when decreasing the sound intensity, allowing it to serve as a microreactor. The integral of the acoustic radiation pressure on the part of the particle surface protruding into air is responsible for particle migration from the center of the liquid marble to the edge. Our results demonstrate that the opening and closing of the liquid marble particle shell can be conveniently achieved via acoustic levitation, opening up a new possibility to manipulate liquid marbles coated with non-ferromagnetic particles.
液滴弹珠在微反应器领域有着广阔的应用前景,其表面的开合起着核心作用。我们利用声悬浮器使液态水弹珠悬浮,从而实现了对颗粒外壳的可控操纵。随着声强增加,稳定悬浮的液滴弹珠从近似球体变为扁平椭球体。有趣的是,在颗粒外壳的极区会产生一个空腔,当声强降低时,该空腔可以完全愈合,使其能够用作微反应器。颗粒表面突出到空气中部分的声辐射压力积分导致颗粒从液滴弹珠中心迁移到边缘。我们的结果表明,通过声悬浮可以方便地实现液滴弹珠颗粒外壳的开合,为操纵涂覆有非铁磁性颗粒的液滴弹珠开辟了新的可能性。