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Sculpting stable structures in pure liquids

Authors :
Emeršič, Tadej
Zhang, Rui
Kos, Žiga
Čopar, Simon
Osterman, Natan
De Pablo, Juan J.
Tkalec, Uros
Emeršič, Tadej
Zhang, Rui
Kos, Žiga
Čopar, Simon
Osterman, Natan
De Pablo, Juan J.
Tkalec, Uros
Publication Year :
2019

Abstract

Pure liquids in thermodynamic equilibrium are structurally homogeneous. In liquid crystals, flow and light pulses are used to create reconfigurable domains with polar order. Moreover, through careful engineering of concerted microfluidic flows and localized optothermal fields, it is possible to achieve complete control over the nucleation, growth, and shape of such domains. Experiments, theory, and simulations indicate that the resulting structures can be stabilized indefinitely, provided the liquids are maintained in a controlled nonequilibrium state. The resulting sculpted liquids could find applications in microfluidic devices for selective encapsulation of solutes and particles into optically active compartments that interact with external stimuli. Copyright © 2019 The Authors.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1363054906
Document Type :
Electronic Resource