US2007034515A1PendingUtilityA1
Radiation- or thermally-curable oxetane barrier sealants
Est. expiryApr 4, 2025(expired)· nominal 20-yr term from priority
G03F 7/038C08G 65/18C08L 71/00B01D 69/00C08L 63/00
44
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Claims
Abstract
This invention relates to cationically curable sealants that provide low moisture permeability and good adhesive strength after cure. The composition consists essentially of an electrophoretic device containing an oxetane compound and a photoinitiating system comprising and photoinitiator and optionally a photosensitizer.
Claims
exact text as granted — not AI-modified1 . An electrophoretic device with a cationically curable barrier composition consisting essentially of
(a) an oxetane compound, and (b) a cationic initiator, (c) optionally, one or more fillers, (d) optionally one or more adhesion promoters, or one or more epoxy resins.
2 . The electrophoretic device in accordance with claim 1 , in which the oxetane compound has the structure:
in which R 1 , R 2 , R 3 , R 4 , R 5 , R 6 are selected from the group consisting hydrogen, and alkyl, haloalkyl, alkoxy, aryloxy, aryl, ester, thio-ester, and sulfide groups.
3 . The electrophoretic device in accordance with claim 1 , in which the oxetane compound is selected from the group of oxetane compounds having the structures:
4 . The electrophoretic device in accordance with claim 1 , in which the oxetane compound has an aromatic core, onto which aromatic core are substituted in a meta-position with each other, the oxetane functionality and an additional polymerizable functionality.
5 . The electrophoretic device in accordance with claim 1 , in which the oxetane compound has the structure:
in which
R 7 , R 8 , R 9 , R 10 , and R 11 are independently selected from the group consisting hydrogen, alkyl, haloalkyl, alkoxy, aryloxy, aryl, alkyloyl and aryloyl;
n is 0, 1, 2, 3, or 4;
Z is a cationically reactive functionality selected from the group consisting of
in which
R 11 and R 12 are selected from the group consisting of hydrogen, alkyl, haloalkyl, alkoxy, aryloxy, aryl, or ester; and
R 13 is a linking group selected from the group consisting of alkyl, haloalkyl, aryl, ether, thio-ether, aryl ether, ester, thio-ester, silane, carbonate, or ketone.
6 . The electrophoretic device in accordance with claim 5 , in which the oxetane compound is selected from the group having the structures:
7 . The electrophoretic device in accordance with claim 1 , in which the oxetane compound is a hybrid compound having both oxetane and a second reactive functionality extending from a cycloaliphatic backbone.
8 . The electrophoretic device in accordance with claim 1 , in which the oxetane compound has the structure
in which
L, L′, L″ and L′″ are linking groups independently selected from the group consisting of
R is selected from the group consisting of linear alkyl, branched alkyl, cycloalkyl, aryl, heteroaryl, silane or siloxane groups which optionally contain heteroatoms;
X is a reactive group independently selected from the group consisting of glycidyl epoxy, aliphatic epoxy, and cycloaliphatic epoxy; and methacrylate; itaconate; maleimide; oxetane, vinyl, propenyl, crotyl, allyl, and propargyl ether and thio-ethers of those groups; maleate, fumarate, and cinnamate esthers; styrenic; acrylamide and methacrylamide; chalcone; thiol; allyl, alkenyl, and cycloalkenyl groups;
n, k, and l are 0 or 1; and
y is 1 to 10.
9 . The electrophoretic device in accordance with claim 8 , in which the oxetane compound has the structure selected from the group consisting of:
10 . The electrophoretic device in accordance with any of claims 1 through 9 in which the cationic initiator is a Brφnsted acid, a Lewis acid, or a photo or thermal acid generator.
11 . The electrophoretic device in accordance with any of claims 1 through 9 in which the one or more fillers are present.
12 . The electrophoretic device in accordance with any of claims 1 through 9 in which the one or more fillers are present and are selected from the group consisting of ground quartz, fused silica, amorphous silica, talc, glass beads, graphite, carbon black, alumina, clays, mica, vermiculite, aluminum nitride, boron nitride; silver, copper, gold, tin, tin/lead alloys, poly(tetrachloroethylene), poly(chlorotriflouroethylene), poly(vinylidene chloride), CaO, BaO, Na 2 SO 4 , CaSO 4 , MgSO 4 , zeolites, silica gel, P 2 O 5 , CaCl 2 , and Al 2 O 3
13 . The electrophoretic device in accordance with any of claims 1 through 9 in which the one or more epoxy resins are present.
14 . The electrophoretic device in accordance with any of claims 1 through 9 in which the one or more epoxy resins are present and are selected from the group consisting of bisphenol F diglycidyl ether, resorcinol diglycidyl ether, novolac glycidyl ethers, halogenated glycidyl ethers, naphthalene diglycidyl ether, and cycloaliphatic epoxies.
15 . The electrophoretic device in accordance with any of claims 1 through 9 in which the one or more adhesion promoters are present.
16 . The electrophoretic device in accordance with any of claims 1 through 9 in which an adhesion promoter is present and is a silane.
17 . An electrophoretic device containing a hybrid compound containing both oxetane and epoxy functionality selected from the group consisting of:
18 . An electrophoretic device sealed with the barrier sealant according to any one of claims 1 to 9 .Join the waitlist — get patent alerts
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