IP Library Granted Patent US 12,025,913
Granted Patent B2
US 12,025,913 · App. 17/670,070 · Granted Jul 2, 2024

Methods of making a bonded assembly and a re-entrant structure, and method of transfer printing a masking layer

Inventors: Seok Kim (Champaign, IL); Hohyun Keum (Champaign, IL); Jun Kyu Park (Champaign, IL)
Assignee: THE BOARD OF TRUSTEES OF THE UNIVERSITY OF ILLINOIS
G03F7/0002G03F7/038B82Y10/00B82Y40/00
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Quick Facts
Patent No.
US 12,025,913
App. No.
17/670,070
Granted
Jul 2, 2024
Kind
B2
Abstract

A method of making a bonded polymeric assembly by transfer printing comprises contacting a stamp with a solid-phase ink comprising a photoresist to form an inked stamp, where the solid-phase ink is reversibly bound to the stamp. The inked stamp is aligned with an object comprising the photoresist and is stamped onto the object. The stamp is then removed, thereby transferring the solid-phase ink onto the object. The solid-phase ink is thermally joined with the object. Thus, a bonded polymeric assembly comprising a bonded joint between the solid-phase ink and the object is formed.

Claims (26)

1. A re-entrant structure for repelling liquid droplets, the re-entrant structure comprising:

a first object disposed on and bonded to a second object at a bonded joint between the first and second objects, each of the first and second objects comprising a polymer, the first object being oriented so as to include a suspended portion not supported by the second object, the suspended portion including an array of through-thickness holes,

wherein, when exposed to a liquid droplet, the re-entrant structure repels the liquid droplet with an apparent contact angle of at least about 90°.

2. The re-entrant structure of claim 1 , wherein the apparent contact angle is at least about 105°.

3. The re-entrant structure of claim 1 , wherein the apparent contact angle is at least about 25% larger than an intrinsic contact angle of the polymer.

4. The re-entrant structure of claim 3 , wherein the intrinsic contact angle of the polymer is at least about 90°.

5. The re-entrant structure of claim 3 , wherein the intrinsic contact angle of the polymer is less than 90°.

6. The re-entrant structure of claim 1 , wherein the polymer comprises a photoresist.

7. The re-entrant structure of claim 6 , wherein the photoresist comprises SU-8.

8. The re-entrant structure of claim 1 , wherein the polymer of the first object is the same as that of the second object.

9. The re-entrant structure of claim 1 , wherein the polymer of the first object is different from that of the second object.

10. The re-entrant structure of claim 1 , wherein the first object includes a solid border extending around all or part of the array of through-thickness holes, and wherein the bonded joint includes the solid border and an underlying portion of the second object.

11. The re-entrant structure of claim 1 , wherein the first and second objects comprise first and second solid-phase inks, and wherein the re-entrant structure is formed by transfer printing the first and second solid-phase inks onto a substrate, followed by thermal joining to form the bonded joint.

12. A re-entrant structure for repelling liquid droplets, the re-entrant structure comprising:

a first object disposed on and bonded to a second object at a bonded joint between the first and second objects, each of the first and second objects comprising a polymer, the first object being oriented so as to include a suspended portion not supported by the second object, the suspended portion including an array of through-thickness holes,

wherein the polymer comprises a photoresist.

13. The re-entrant structure of claim 12 , wherein the photoresist comprises SU-8.

14. The re-entrant structure of claim 12 , wherein, when exposed to a liquid droplet, the re-entrant structure repels the liquid droplet with an apparent contact angle of at least about 90°.

15. The re-entrant structure of claim 14 , wherein the apparent contact angle is at least about 105°.

16. The re-entrant structure of claim 14 , wherein the apparent contact angle is at least about 25% larger than an intrinsic contact angle of the polymer.

17. The re-entrant structure of claim 16 , wherein the intrinsic contact angle of the polymer is at least about 90°.

18. The re-entrant structure of claim 16 , wherein the intrinsic contact angle of the polymer is less than 90°.

19. The re-entrant structure of claim 12 , wherein the polymer of the first object is the same as that of the second object.

20. The re-entrant structure of claim 12 , wherein the polymer of the first object is different from that of the second object.

21. The re-entrant structure of claim 12 , wherein the first object includes a solid border extending around all or part of the array of through-thickness holes, and wherein the bonded joint includes the solid border and an underlying portion of the second object.

22. The re-entrant structure of claim 12 , wherein the first and second objects comprise first and second solid-phase inks, and wherein the re-entrant structure is formed by transfer printing the first and second solid-phase inks onto a substrate, followed by thermal joining to form the bonded joint.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2024
From: KIM, SEOK; KEUM, HOHYUN; PARK, JUN KYU
To: THE BOARD OF TRUSTEES OF THE UNIVERSITY OF ILLINOIS
Reel/Frame 066678/0223 →
Continuity (3)
Division 16515431 · Jul 18, 2019
Provisional Application 62700455 · Jul 19, 2018
Related Publication 20220163883A1 · May 26, 2022