IP Library Granted Patent US 12,186,738
Granted Patent B2
US 12,186,738 · App. 17/429,563 · Granted Jan 7, 2025

Catalyst system

Inventors: Raghunath Roy (Collegeville, PA); Bharat I. Chaudhary (Princeton, NJ); Manish K. Mundra (Collegeville, PA); Jeffrey M. Cogen (Flemington, NJ)
Assignee: Dow Global Technologies LLC
B01J23/06B01J21/063B01J23/14B01J31/2239C08F4/027C08F4/58C08F210/02C08F220/1802C08F230/08C08J3/226C08J3/24C08K5/14C08L23/06C08L23/0815C08L23/0869C08L23/0892C08L23/26C08L43/04B01J2531/46C08J2323/08C08J2423/08C08J2433/08C08L2203/206C08L2207/066H01B3/441
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Quick Facts
Patent No.
US 12,186,738
App. No.
17/429,563
Granted
Jan 7, 2025
Kind
B2
Abstract

A catalyst system comprising a combination of a tin-based moisture-cure catalyst, a titanium(IV) compound that is titanium dioxide or a titanium alkoxide, and zinc oxide. A catalyst masterbatch comprising the catalyst system and a carrier resin. A moisture-curable prepolymer formulation comprising the catalyst masterbatch and a (hydrolyzable silyl group)-functional polyolefin prepolymer. Methods of making and using same. Cured polymer products made therefrom. Articles containing or made from same.

Claims (13)

1. A catalyst masterbatch comprising:

from 99 to 1 wt % of a catalyst system comprising a combination of from 75 to 85 weight percent (wt %) of zinc oxide (ZnO), from 10 to 25 wt % of titanium dioxide (TiO2), and from 2 to 10 wt % of a tin-organic ligand coordination complex (Sn Complex), wherein the sum of all wt % equals 100.00 wt %; and

from 1 to 99 wt % of a carrier resin, wherein the carrier resin is a non-aromatic polyolefin polymer, an ethylene/unsaturated carboxylic ester copolymer, or a blend thereof.

2. The catalyst masterbatch of claim 1 wherein the wt % of ZnO is at least 25 wt % higher than the wt % of TiO2 and the wt % of TiO2 is greater than the wt % of the Sn Complex.

3. The catalyst masterbatch of claim 1 wherein the tin-organic ligand coordination complex (Sn Complex) is a dialkyltin dicarboxylate.

4. A moisture-curable polyolefin formulation comprising from 65 to 99.9 wt % of (A) a (hydrolyzable silyl group)-functional polyolefin prepolymer; from 0.1 to 5 wt % of (B) a catalyst system comprising a combination of from 75 to 85 weight percent (wt %) of zinc oxide (ZnO), from 10 to 25 wt % of titanium dioxide (TiO2), and from 2 to 10 wt % of a tin-organic ligand coordination complex (Sn Complex), wherein the sum of all wt % equals 100.00 wt %; and from 0 to 30 wt % of a carrier resin; wherein the ZnO is at least 1.0 wt %, the TiO2 is at least 0.70 wt % and the Sn Complex is at least 0.10 wt %; and wherein all wt % are based on total weight of the moisture-curable polyolefin formulation.

5. The moisture-curable polyolefin formulation of claim 4 wherein the (A) (hydrolyzable silyl group)-functional polyolefin prepolymer is characterized by any one of limitations (i) to (iii): (i) each hydrolyzable silyl group is independently a monovalent group of formula (R2)m(R3)3-mSi-, wherein subscript m is an integer of 1, 2, or 3; each R2 is independently H, HO—, (C1-C6) alkoxy, (C2-C6)carboxy, phenoxy, (C1-C6)alkyl-phenoxy, ((C1-C6)alkyl)2N—, (C1-C6)alkyl(H)C═NO—, or ((C1-C6)alkyl)2C═NO—; and each R3 is independently (C1-C6)alkyl or phenyl; (ii) the polyolefin portion of (A7) is polyethylene based, poly(ethylene-co-(C3-C40)alpha-olefin)-based, or a combination thereof; and (iii) both (i) and (ii).

6. The moisture-curable polyolefin formulation of claim 4 further comprising at least one additive selected from additives (C) to (M): (C) an organic peroxide; (D) a scorch retardant; (E) an antioxidant; (F) a treeing retardant (water treeing and/or electrical treeing retardant); (G) a colorant; (H) a moisture scavenger; (I) a hindered amine light stabilizer (HALS); (J) a processing aid; (K) a moisture generator; (L) a flame retardant; and (M) a combination of any two or more of (C) to (L).

7. A method of making a moisture-curable polyolefin formulation, the method comprising mixing a melt of (A) a (hydrolyzable silyl group)-functional polyolefin prepolymer with (B) a catalyst system so as to give a melt-mixture comprising the melt of (A) and either the (B) or the catalyst masterbatch wherein the catalyst system comprises a combination of from 75 to 85 weight percent (wt %) of zinc oxide (ZnO), from 10 to 25 wt % of titanium dioxide (TIO2), and from 2 to 10 wt % of a tin-organic ligand coordination complex (Sn Complex), wherein the sum of all wt % equals 100.00 wt %; and extruding the melt-mixture so as to make the moisture-curable polyolefin formulation.

8. A moisture-cured polyolefin product made by moisture curing the moisture-curable polyolefin formulation of claim 5 so as to give the moisture-cured polyolefin product.

9. A manufactured article comprising a shaped form of the moisture-cured polyolefin product of claim 8 .

10. A coated conductor comprising a conductive core and a polymeric layer at least partially surrounding the conductive core, wherein at least a portion of the polymeric layer comprises the moisture-cured polyolefin product of claim 8 .

11. A method of conducting electricity, the method comprising applying a voltage across the conductive core of the coated conductor of claim 10 so as to generate a flow of electricity through the conductive core.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2024
From: ROY, RAGHUNATH; CHAUDHARY, BHARAT I.; MUNDRA, MANISH K.
To: DOW GLOBAL TECHNOLOGIES LLC
Reel/Frame 069151/0766 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2024
From: UNION CARBIDE CHEMICALS & PLASTICS TECHNOLOGY LLC
To: DOW GLOBAL TECHNOLOGIES LLC
Reel/Frame 069294/0484 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2024
From: COGEN, JEFFREY M.
To: UNION CARBIDE CHEMICALS & PLASTICS TECHNOLOGY LLC
Reel/Frame 069294/0703 →
Continuity (2)
Provisional Application 62814897 · Mar 7, 2019
Related Publication 20220008896A1 · Jan 13, 2022
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