Issue 19, 2012

Free-floating hydrogel-based rafts supporting a microarray of functional entities at fluid interfaces

Abstract

In the present paper, we report a method for fabricating a macroscopic, free-floating device that supports a microarray of molecular functional entities. Therefore, the fabrication process developed by us combines bottom-up and top-down microfabrication strategies for a spatially controllable integration of molecular entities into the macroscopic device. For application, the generated device is transferred to fluid interfaces. Through a combined experimental and theoretical study, we demonstrate that the microscopic cavities of the intrinsically hydrophilic comb-shaped mesh structure enable the flotation of the device at a water–air interface of a sessile droplet due to surface tension effects. The design of the functionalized and free-floating device affords a long-term stable approach with respect to a chemical patterning of this fluid interface without loss of the lateral arrangement of the functional entities over time.

Graphical abstract: Free-floating hydrogel-based rafts supporting a microarray of functional entities at fluid interfaces

Supplementary files

Article information

Article type
Paper
Submitted
30 Dec 2011
Accepted
02 Mar 2012
First published
30 Mar 2012

Soft Matter, 2012,8, 5293-5300

Free-floating hydrogel-based rafts supporting a microarray of functional entities at fluid interfaces

R. Hensel and H. Braun, Soft Matter, 2012, 8, 5293 DOI: 10.1039/C2SM07485K

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