|
Request Sample |
NANOARC® AL-2125Product |
Nanophase Technologies | A 45 wt% dispersion of 150 nm Aluminum Oxide in Propylene Glycol Methyl Ether Acetate. Improves scratch resistance in solvent-borne coating formulations. |
|
Request Sample |
NANOARC® AL-2156Product |
Nanophase Technologies | A 45 wt% dispersion of 150 nm Aluminum Oxide in Water. Improves scratch resistance in water-borne coating formulations. |
|
Request Sample |
NANOARC® AL-2160Product |
Nanophase Technologies | A 45 wt% dispersion of 150 nm Aluminum Oxide in Tripropylene Glycol Diacrylate. Improves scratch resistance in UV/EB curable coating formulations. |
|
Request Sample |
NANOARC® AL-2255Product |
Nanophase Technologies | A 30 wt% dispersion of 20 nm Aluminum Oxide in Water. Improves scratch resistance in water-borne coating formulations. |
|
Request Sample |
NANOARC® AL-2260Product |
Nanophase Technologies | A 30 wt% dispersion of 20 nm Aluminum Oxide in Tripropylene Glycol Diacrylate. Improves scratch resistance in UV/EB curable coating formulations. |
|
Request Sample |
NANOARC® AL-2325Product |
Nanophase Technologies | A 55 wt% dispersion of 250 nm Aluminum Oxide in Propylene Glycol Methyl Ether Acetate. Improves scratch resistance in solvent-borne coating formulations. |
|
Request Sample |
NANOARC® AL-2350Product |
Nanophase Technologies | A 55 wt% dispersion of 250 nm Aluminum Oxide in Water. Improves scratch resistance in water-borne coating formulations. |
|
Request Sample |
NANOARC® AL-2360Product |
Nanophase Technologies | A 55 wt% dispersion of 250 nm Aluminum Oxide in Tripropylene Glycol Diacrylate. Improves scratch resistance in UV/EB curable coating formulations. |
|
Request Sample |
NANOARC® AL-2425Product |
Nanophase Technologies | A 50 wt% dispersion of 40 nm Aluminum Oxide in Propylene Glycol Methyl Ether Acetate. Improves scratch resistance in solvent-borne coating formulations. |
|
Request Sample |
NANOARC® AL-2456Product |
Nanophase Technologies | A 50 wt% dispersion of 40 nm Aluminum Oxide in Water. Improves scratch resistance in water-borne coating formulations. |
|
Request Sample |
NANOARC® AL-2460Product |
Nanophase Technologies | A 30 wt% dispersion of 40 nm Aluminum Oxide in Tripropylene Glycol Diacrylate. Improves scratch resistance in UV/EB curable coating formulations. |
|
Request Sample |
NANOARC® AL-2825Product |
Nanophase Technologies | A 55 wt% dispersion of 800 nm Aluminum Oxide in Propylene Glycol Methyl Ether Acetate. Improves scratch resistance in solvent-borne coating formulations. |
|
Request Sample |
NanoArc® AL-2850Product |
Nanophase Technologies | A 55 wt% dispersion of 800 nm Aluminum Oxide in Water. Improves scratch resistance in water-borne coating formulations. |
|
Request Sample |
NANOARC® AL-2860Product |
Nanophase Technologies | A 55 wt% dispersion of 800 nm Aluminum Oxide in Tripropylene Glycol Diacrylate. Improves scratch resistance in UV/EB curable coating formulations. |
|
Request Sample |
NANOARC® ZN-2225Product |
Nanophase Technologies | A 40 wt% dispersion of 20 nm Zinc Oxide in Propylene Glycol Methyl Ether Acetate. Improves UV resistance in solvent-borne coating formulations. |
|
Request Sample |
NANOARC® ZN-2250Product |
Nanophase Technologies | A 40 wt% dispersion of 20 nm Zinc Oxide in Water. Improves UV resistance in water-borne coating formulations. |
|
Request Sample |
NANOARC® ZN-2425Product |
Nanophase Technologies | A 40 wt% dispersion of 40 nm Zinc Oxide in Propylene Glycol Methyl Ether Acetate. Improves UV resistance in solvent-borne coating formulations. |
|
Request Sample |
NANOARC® ZN-2456Product |
Nanophase Technologies | A 40 wt% dispersion of 40 nm Zinc Oxide in Water. Improves UV resistance in water-borne coating formulations. |
|
Request Sample |
NANOARC® ZN-2625Product |
Nanophase Technologies | A 50 wt% dispersion of 60 nm Zinc Oxide in Propylene Glycol Methyl Ether Acetate. Improves UV resistance in solvent-borne coating formulations. |
|
Request Sample |
NANOARC® ZN-2656 PRODUCTProduct |
Nanophase Technologies | A 50 wt% dispersion of 60 nm Zinc Oxide in Water. Improves UV resistance in water-borne coating formulations. |