IP Library Granted Patent US 9,375,873
Granted Patent B2
US 9,375,873 · App. 13/880,321 · Granted Jun 28, 2016

Curved and flexible microfluidics

Inventors: David H. Gracias (Baltimore, MD); Mustapha Jamal (Clarksville, MD)
Assignee: The Johns Hopkins University
B29C59/16B01L3/502707B29C59/005B81C1/00007C08J3/245H01Q1/38B01L2200/10B01L2200/12B01L2300/123Y10T428/24628Y10T428/24802
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Quick Facts
Patent No.
US 9,375,873
App. No.
13/880,321
Granted
Jun 28, 2016
Kind
B2
Abstract

A method of producing curved, folded or reconfigurable structures includes providing a polymer film, exposing the polymer film to at least one of patterned radiation or patterned chemical contact, and conditioning the polymer film subsequent to the exposing. The polymer film includes a polymer that is active to cross-linking of polymer chains in response to the exposing. The exposing is performed such that at least one exposed region of the polymer film develops a gradient in an amount of cross-linking of polymer chains along a cross-sectional direction of the polymer film, and the conditioning of the polymer film removes uncross-linked polymer chains to provide a curved, folded or reconfigurable structure.

Claims (20)

1. A curved, folded or reconfigurable structure comprising:

a curved, folded or reconfigurable polymer film having at least one portion that has a gradient in an amount of cross-linking of polymer chains along a cross-sectional direction thereof,

wherein said at least one portion being responsive to an environmental stimulus to change an amount of curvature, and

wherein said curved, folded or reconfigurable structure is a self-assembling three-dimensional structure of at least one of a microfluidic structure, an electromagnetic structure, and an optoelectronic structure.

2. The curved, folded or reconfigurable structure according to claim 1 , wherein said environmental stimulus is at least one of drying or an organic solvent.

3. A curved, folded or reconfigurable structure comprising:

a curved, folded or reconfigurable polymer film having at least one portion that has a gradient in an amount of cross-linking of polymer chains along a cross-sectional direction thereof; and

a flexible substrate attached to said curved, folded or reconfigurable polymer film,

wherein said at least one portion being responsive to an environmental stimulus to change an amount of curvature, and

wherein said flexible substrate and said curved, folded or reconfigurable polymer film define a microfluidic channel therebetween such that said curved, folded or reconfigurable structure is a curved, folded or reconfigurable microfluidic structure.

4. The curved, folded or reconfigurable structure according to claim 3 , wherein said flexible substrate and said curved, folded or reconfigurable polymer film define a plurality of microfluidic channels therebetween such that said curved, folded or reconfigurable structure is a scaffold for tissue growth.

5. The curved, folded or reconfigurable structure according to claim 3 , wherein said flexible substrate and said curved, folded or reconfigurable polymer film consist essentially of biodegradable materials.

6. A curved, folded or reconfigurable structure comprising:

a curved, folded or reconfigurable polymer film having at least one portion that has a gradient in an amount of cross-linking of polymer chains along a cross-sectional direction thereof; and

a pattern of at least one material formed on said curved, folded or reconfigurable polymer film,

wherein said at least one portion being responsive to an environmental stimulus change an amount of curvature, and

wherein a reconfiguration of said curved, folded or reconfigurable structure with said at least one material results in at least one of a selectively reconfigurable and controllable optical property of said curved, folded or reconfigurable structure or a selectively reconfigurable and controllable electrical property of said curved, folded or reconfigurable structure.

7. The curved, folded or reconfigurable structure according to claim 6 , wherein said reconfiguration of said curved, folded or reconfigurable structure with said at least one material results in a selectively reconfigurable and controllable optical property such that at least one of an optical reflection, transmission, absorption, or scattering property of said curved, folded or reconfigurable structure selectively changes with said reconfiguration.

8. The curved, folded or reconfigurable structure according to claim 6 , wherein said at least one material is an electrical conductor and said curved, folded or reconfigurable structure is an antenna array.

9. The curved, folded or reconfigurable structure according to claim 6 , wherein said at least one material is an electrical conductor and said curved, folded or reconfigurable structure is a metamaterial.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2013
From: GRACIAS, DAVID H.; JAMAL, MUSTAPHA
To: THE JOHNS HOPKINS UNIVERSITY
Reel/Frame 030260/0698 →
Continuity (2)
Provisional Application 61406346 · Oct 25, 2010
Related Publication 20130210148A1 · Aug 15, 2013