Barrier additives
The present invention relates to processes for making compatibilized high aspect ratio barrier additives and polymer compositions that comprise compatibilized high aspect ratio barrier additives. The invention also relates to compositions produced by these processes, and articles formed from polymer compositions of this invention. The barrier additives provide passive barriers to gas molecules such as oxygen and carbon dioxide minimizing transit of such molecules through sidewalls of polymer articles containing the barrier additives.
1. A barrier additive composition for providing passive barrier properties to a polymer composition comprising a preselected polymer selected from the group consisting of polyesters, polyolefins, and polyamides, the barrier additive composition comprising:
(a) a compatibilized barrier additive, wherein the compatibilized barrier additive is a reaction product of:
(i) a layered inorganic barrier additive precursor, wherein the layered inorganic barrier additive precursor is a layered double hydroxide; and
(ii) an organic compatibilization agent, wherein the organic compatibilization agent is an organic phosphate or phosphonate; and
(b) a vehicle for the compatibilized barrier additive, wherein:
(i) if the preselected polymer is a polyester or a polyamide, the vehicle is selected from the group consisting of dioleates, citrates, adipates, dibenzoates, hydrogenated and acetylated oil monoglycerides, and combinations thereof; and
(ii) if the preselected polymer is a polyolefin, the vehicle is selected from the group consisting of mineral oils, unsaturated vegetable oils, and combinations thereof.
2. The barrier additive composition according to claim 1 , wherein the layered double hydroxide has the general formula M +2 8-x M +3 x (OH) 16 .4H 2 O(CO 3 ) x/2 .
3. The barrier additive composition according to claim 2 , wherein M +2 is selected from divalent cations of magnesium, calcium, strontium, manganese, cobalt, nickel, copper, and zinc.
4. The barrier additive composition according to claim 3 , wherein M +3 is selected from trivalent cations of chromium, iron, aluminum, gallium, indium, yttrium, and the lanthanides.
5. The barrier additive composition according to claim 4 , wherein M +2 is magnesium and M +3 is aluminum.
6. The barrier additive composition according to claim 1 , wherein the organic phosphate or phosphonate is covalently bonded to the surface of the layered inorganic barrier additive precursor.
7. The barrier additive composition according to claim 1 , wherein the layered inorganic barrier additive precursor has an apparent aspect ratio ranging from about 500 to about 50,000.
8. The barrier additive composition according to claim 7 , wherein the apparent aspect ratio ranges from about 2500 to about 40,000.
9. The barrier additive composition according to claim 1 , wherein the organic compatibilization agent is a polyethylene glycol phenyl ether phosphate.
10. The barrier additive composition according to claim 1 , wherein the organic compatibilization agent is selected from the group consisting of a polyethylene glycol tridecyl ether phosphate; a polyethylene glycol phenyl ether phosphate; a polyethylene glycol tristyrylphenyl ether phosphate; and combinations thereof.