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Liquid marble clearance and restoration via gas bubble insertion and bursting.
Lin, Eric Shen; Song, Zhixiong; Ong, Jian Wern; Abid, Hassan Ali; Chung Kim Chung, Dwayne; Huynh, So Hung; Liew, Oi Wah; Ng, Tuck Wah.
Afiliación
  • Lin ES; Laboratory for Optics and Applied Mechanics, Department of Mechanical & Aerospace Engineering, Monash University Clayton, VIC3800, Australia. engngtw@gmail.com.
  • Song Z; Laboratory for Optics and Applied Mechanics, Department of Mechanical & Aerospace Engineering, Monash University Clayton, VIC3800, Australia. engngtw@gmail.com.
  • Ong JW; Laboratory for Optics and Applied Mechanics, Department of Mechanical & Aerospace Engineering, Monash University Clayton, VIC3800, Australia. engngtw@gmail.com.
  • Abid HA; Laboratory for Optics and Applied Mechanics, Department of Mechanical & Aerospace Engineering, Monash University Clayton, VIC3800, Australia. engngtw@gmail.com.
  • Chung Kim Chung D; Laboratory for Optics and Applied Mechanics, Department of Mechanical & Aerospace Engineering, Monash University Clayton, VIC3800, Australia. engngtw@gmail.com.
  • Huynh SH; Laboratory for Optics and Applied Mechanics, Department of Mechanical & Aerospace Engineering, Monash University Clayton, VIC3800, Australia. engngtw@gmail.com and Radiometer Pacific Pty Ltd, 1/96 Ricketts Road, Mount Waverley, VIC3149, Australia.
  • Liew OW; Cardiovascular Research Institute, Yong Loo Lin School of Medicine, National University of Singapore, National University Health System, Centre for Translational Medicine, 14 Medical Drive, 117599, Singapore.
  • Ng TW; Laboratory for Optics and Applied Mechanics, Department of Mechanical & Aerospace Engineering, Monash University Clayton, VIC3800, Australia. engngtw@gmail.com.
Soft Matter ; 17(9): 2512-2517, 2021 Mar 11.
Article en En | MEDLINE | ID: mdl-33506846
There is hitherto a lack of a simple way to disrupt the coating of particles from liquid marbles in order to introduce additional reagents. Here, a 40 µL liquid marble, created on a superhydrophobic substrate with a 2 mm hole, forms an overhead and overhanging liquid component from which a single gas bubble of up to 28 µL volume could be introduced via the latter. This caused a localized clearing of the particle shell at the apical region of the overhead component because the particles could not be energetically sustained at the thin film region of the bubble. The subsequent dispensation of 5 µL of an external liquid directly onto the shell-free apex of the liquid marble allowed the coalescence of the two liquid bodies, bubble rupture, and restoration of complete particle shell encapsulation. The addition of the liquid via the overhanging component was alternatively found incapable of increasing the size of the overhead drop component. The localized bubble-actuated transient shell clearance at the apex of the liquid marble to allow the addition of reagents shown here portends new vistas for liquid marbles to be used in biomedical applications.

Texto completo: 1 Bases de datos: MEDLINE Idioma: En Revista: Soft Matter Año: 2021 Tipo del documento: Article País de afiliación: Australia

Texto completo: 1 Bases de datos: MEDLINE Idioma: En Revista: Soft Matter Año: 2021 Tipo del documento: Article País de afiliación: Australia