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US20180309089A1 - Compositions and Techniques for Forming Organic Thin Films - Google Patents

Compositions and Techniques for Forming Organic Thin Films
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Publication number
US20180309089A1
US20180309089A1US15/955,303US201815955303AUS2018309089A1US 20180309089 A1US20180309089 A1US 20180309089A1US 201815955303 AUS201815955303 AUS 201815955303AUS 2018309089 A1US2018309089 A1US 2018309089A1
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US
United States
Prior art keywords
meth
mol
acrylate monomer
ink composition
curable ink
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US15/955,303
Inventor
Elena Rogojina
Teresa A. Ramos
Citra Yuwono
Lorenza Moro
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kateeva Inc
Original Assignee
Kateeva Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Kateeva IncfiledCriticalKateeva Inc
Priority to TW112149036ApriorityCriticalpatent/TWI866699B/en
Priority to TW107113054Aprioritypatent/TWI841527B/en
Priority to TW113127365Aprioritypatent/TW202521641A/en
Priority to US15/955,303prioritypatent/US20180309089A1/en
Assigned to KATEEVA, INC.reassignmentKATEEVA, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: MORO, LORENZA, YUWONO, CITRA, RAMO, TERESA A., ROGOJINA, ELENA
Assigned to KATEEVA, INC.reassignmentKATEEVA, INC.CORRECTIVE ASSIGNMENT TO CORRECT THE SECOND INVENTOR LAST NAME PREVIOUSLY RECORDED AT REEL: 045686 FRAME: 0574. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT.Assignors: MORO, LORENZA, YUWONO, CITRA, RAMOS, TERESA A., ROGOJINA, ELENA
Publication of US20180309089A1publicationCriticalpatent/US20180309089A1/en
Assigned to EAST WEST BANKreassignmentEAST WEST BANKSECURITY INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: KATEEVA, INC.
Assigned to KATEEVA, INC.reassignmentKATEEVA, INC.RELEASE BY SECURED PARTY (SEE DOCUMENT FOR DETAILS).Assignors: EAST WEST BANK, A CALIFORNIA BANKING CORPORATION
Assigned to SINO XIN JI LIMITEDreassignmentSINO XIN JI LIMITEDSECURITY AGREEMENTAssignors: KATEEVA, INC.
Assigned to SINO XIN JI LIMITEDreassignmentSINO XIN JI LIMITEDSECURITY INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: KATEEVA CAYMAN HOLDING, INC., KATEEVA, INC.
Assigned to HB SOLUTION CO., LTD.reassignmentHB SOLUTION CO., LTD.SECURITY INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: KATEEVA CAYMAN HOLDING, INC.
Priority to US17/809,243prioritypatent/US11844234B2/en
Priority to US18/497,917prioritypatent/US20240081096A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

The present teachings relate to various embodiments of a curable ink composition, which once printed and cured form high glass transition temperature polymeric films on a substrate such as, but not limited by, an OLED device substrate. Various embodiments of the curable ink compositions comprise di(meth)acrylate monomers, as well as multifunctional crosslinking agents.

Description

Claims (34)

What is claimed is:
1. A process of forming an encapsulated electronic device, the method comprising:
applying a curable ink composition over an electronic device, the curable ink composition comprising:
1 mol. % to 15 mol. % tri(meth)acrylate monomer, tetra(meth)acrylate monomer, or combination thereof; and
1 mol. % to 10 mol. % of a cure initiator; and
curing the curable ink composition, whereby an organic polymeric thin film is formed over the electronic device, wherein the polymer of the polymeric thin film has a glass transition temperature of at least 85° C. in its bulk form.
2. The process ofclaim 1, wherein the electronic device is an optoelectronic device.
3. The process ofclaim 2, wherein the optoelectronic device is an organic light emitting diode.
4. The process ofclaim 1, further comprising forming an inorganic barrier layer on the electronic device and further wherein applying the curable ink composition over the electronic device comprises applying the curable ink composition on the inorganic barrier layer.
5. The process ofclaim 1, wherein the ink composition comprises 1 mol. % to 15 mol. % tetra(meth)acrylate monomer or 1 mol. % to 15 mol. % of a combination of tri(meth)acrylate monomer and tetra(meth)acrylate monomer.
6. The process ofclaim 1, wherein the ink composition comprises 1 mol. % to 15 mol. % of a combination of tri(meth)acrylate monomer and tetra(meth)acrylate monomer.
7. The process ofclaim 5, wherein the tetra(meth)acrylate monomer comprises pentaerythritol tetra(meth)acrylate.
8. The process ofclaim 6, wherein the tri(meth)acrylate monomer comprises trimethylolpropane tri(meth)acrylate.
9. The process ofclaim 1, wherein the curable ink composition further comprises 60 mol. % to 97 mol. % mono(meth)acrylate monomer, di(meth)acrylate monomer, or combination thereof.
10. The process ofclaim 9, wherein the curable ink composition comprises the di(meth)acrylate dodecanediol dimethacrylate.
11. The process ofclaim 10, wherein the ink composition comprises the tetra(meth)acrylate monomer pentaerythritol tetra(meth)acrylate.
12. The process ofclaim 11, wherein the ink composition comprises the tri(meth)acrylate monomer trimethylolpropane tri(meth)acrylate.
13. The process ofclaim 1, wherein the curable ink composition further comprises a diurethane di(meth)acrylate.
14. The process ofclaim 13, wherein the curable ink composition comprises 1 mol. % to 20 mol. % of the diurethane di(meth)acrylate monomer.
15. The process ofclaim 14, wherein the polymer of the polymeric thin film has a glass transition temperature of at least 90° C. in its bulk form.
16. The process ofclaim 1, wherein the curable ink composition has a viscosity in the range from 10 cPs to 28 cPs at 25° C. and a surface tension in the range from 28 dyn/cm to 45 dyn/cm at 25° C.
17. The process ofclaim 14, wherein applying the curable ink composition over the electronic device comprises inkjet printing the curable ink composition over the electronic device.
18. An encapsulated electronic device comprising:
an electronic device; and
a polymeric film disposed over the electronic device, wherein the polymer of the polymeric thin film has a glass transition temperature of at least 85° C. in its bulk form and further wherein the polymer film comprises the polymerization product of a curable ink composition comprising:
1 mol. % to 15 mol. % tri(meth)acrylate monomer, tetra(meth)acrylate monomer, or combination thereof; and
1 mol. % to 10 mol. % of a cure initiator.
19. The electronic device ofclaim 18, wherein the optoelectronic device is an organic light emitting diode.
20. The electronic device ofclaim 18, wherein the ink composition comprises 1 mol. % to 15 mol. % tetra(meth)acrylate monomer or 1 mol. % to 15 mol. % of a combination of tri(meth)acrylate monomer and tetra(meth)acrylate monomer.
21. The process ofclaim 18, wherein the ink composition comprises 1 mol. % to 15 mol. % of a combination of tri(meth)acrylate monomer and tetra(meth)acrylate monomer.
22. The electronic device ofclaim 20, wherein the tetra(meth)acrylate monomer comprises pentaerythritol tetra(meth)acrylate.
23. The electronic device ofclaim 21, wherein the tri(meth)acrylate monomer comprises trimethylolpropane tri(meth)acrylate.
24. The electronic device ofclaim 18, wherein the curable ink composition further comprises 60 mol. % to 97 mol. % mono(meth)acrylate monomer, di(meth)acrylate monomer, or combination thereof.
25. The electronic device ofclaim 18, wherein the curable ink composition further comprises a diurethane di(meth)acrylate.
26. The electronic device ofclaim 25, wherein the curable ink composition comprises 1 mol. % to 20 mol. % of the diurethane di(meth)acrylate monomer.
27. The electronic device ofclaim 26, wherein the polymer of the polymeric thin film has a glass transition temperature of at least 90° C. in its bulk form.
28. A curable ink composition comprising:
60 mol. % to 97 mol. % mono(meth)acrylate monomer, di(meth)acrylate monomer, or combination thereof;
1 mol. % to 15 mol. % tri(meth)acrylate monomer;
1 mol. % to 15 mol. % tetra(meth)acrylate monomer; and
1 mol. % to 10 mol. % of a cure initiator.
29. The curable ink composition ofclaim 28, wherein the tetra(meth)acrylate monomer comprises pentaerythritol tetra(meth)acrylate.
30. The curable ink composition ofclaim 29, wherein the tri(meth)acrylate monomer comprises trimethylolpropane tri(meth)acrylate.
31. The curable ink composition ofclaim 28, comprising the di(meth)acrylate monomer dodecanediol dimethacrylate.
32. A curable ink composition comprising:
65 mol. % to 97 mol. % mono(meth)acrylate monomer, di(meth)acrylate monomer, or combination thereof
1 mol. % to 20 mol. % diurethane di(meth)acrylate;
1 mol. % to 15 mol. % tri(meth)acrylate monomer, tetra(meth)acrylate monomer, or combination thereof; and
1 mol. % to 10 mol. % of a cure initiator.
33. The curable ink composition ofclaim 32, comprising the tetra(meth)acrylate monomer pentaerythritol tetra(meth)acrylate.
34. The curable ink composition ofclaim 33, comprising the di(meth)acrylate monomer dodecanediol dimethacrylate.
US15/955,3032017-04-212018-04-17Compositions and Techniques for Forming Organic Thin FilmsAbandonedUS20180309089A1 (en)

Priority Applications (6)

Application NumberPriority DateFiling DateTitle
TW112149036ATWI866699B (en)2017-04-212018-04-17A polymer film, encapsulated electronic device comprising the polymer film, and a process of forming the encapsulated electronic device
TW107113054ATWI841527B (en)2017-04-212018-04-17Compositions and techniques for forming organic thin films
TW113127365ATW202521641A (en)2017-04-212018-04-17Compositions and techniques for forming organic thin films
US15/955,303US20180309089A1 (en)2017-04-212018-04-17Compositions and Techniques for Forming Organic Thin Films
US17/809,243US11844234B2 (en)2017-04-212022-06-27Compositions and techniques for forming organic thin films
US18/497,917US20240081096A1 (en)2017-04-212023-10-30Curable compositions and techniques for forming organic thin films

Applications Claiming Priority (3)

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US201762488401P2017-04-212017-04-21
US201862653035P2018-04-052018-04-05
US15/955,303US20180309089A1 (en)2017-04-212018-04-17Compositions and Techniques for Forming Organic Thin Films

Related Child Applications (1)

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US17/809,243ContinuationUS11844234B2 (en)2017-04-212022-06-27Compositions and techniques for forming organic thin films

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US20180309089A1true US20180309089A1 (en)2018-10-25

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US15/955,303AbandonedUS20180309089A1 (en)2017-04-212018-04-17Compositions and Techniques for Forming Organic Thin Films
US17/809,243ActiveUS11844234B2 (en)2017-04-212022-06-27Compositions and techniques for forming organic thin films
US18/497,917PendingUS20240081096A1 (en)2017-04-212023-10-30Curable compositions and techniques for forming organic thin films

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US18/497,917PendingUS20240081096A1 (en)2017-04-212023-10-30Curable compositions and techniques for forming organic thin films

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US (3)US20180309089A1 (en)
EP (1)EP3613091A4 (en)
JP (2)JP7144864B2 (en)
KR (2)KR102607711B1 (en)
CN (2)CN118510305A (en)
TW (3)TWI866699B (en)
WO (1)WO2018195066A2 (en)

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US20220328788A1 (en)2022-10-13
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