Methods and materials for fabricating laminate nanomolds and nanoparticles therefrom
A laminate nanomold includes a layer of perfluoropolyether defining a cavity that has a predetermined shape and a support layer coupled with the layer of perfluoropolyether. The laminate can also include a tie-layer coupling the layer of perfluoropolyether with the support layer. The tie-layer can also include a photocurable component and a thermal curable component. The cavity can have a broadest dimension of less than 500 nanometers.
1. A mold comprising:
a mold layer having a first surface defining a plurality of cavities, wherein each cavity of the plurality of cavities has a predetermined shape and a width to depth ratio of 100,000:1 or less, the mold layer having a thickness of less than 75 micrometers and comprising a polymer material selected from the group consisting of: fluoropolyether, perfluoropolyether, poly(dimethylsiloxane), poly(tetramethylene oxide), poly(ethylene oxide), poly(oxetanes), polyisoprene, polybutadiene, and fluoroolefin-based fluoroelastomers; and
a support layer coupled with a second surface of the mold layer opposite the first surface, wherein the coupled mold and support layer has a modulus of greater than 1000 MPa.
2. The mold of claim 1 , wherein the width to depth ratio is between about 100:1 and about 1,000:1.
3. The mold of claim 1 , wherein the width to depth ratio is between about 10:1 and about 100:1.
4. The mold of claim 1 , wherein the width to depth ratio is between about 5:1 and about 10:1.
5. The mold of claim 1 , wherein the width to depth ratio is between about 2:1 and about 10:1.
6. The mold of claim 1 , wherein the width to depth ratio is between about 1:1 and about 5:1.
7. The mold of claim 1 , wherein the width to depth ratio is less than about 10:1.
8. The mold of claim 1 , wherein the width to depth ratio is less than about 5:1.
9. The mold of claim 1 , wherein the support layer is coupled with the mold layer by a tie-layer disposed between the support layer and the second surface of the mold layer.
10. A mold system comprising:
a polymer layer, wherein the polymer layer includes a first surface defining a plurality of cavities, wherein each cavity of the plurality of cavities has a predetermined shape and a width to depth ratio of 100,000:1 or less, and wherein the polymer layer is less than about 75 micrometers in thickness;
a support layer coupled with a second surface of the polymer layer opposite the first surface, wherein the coupled polymer and support layer has a modulus greater than about 1000 MPa;
a sheet positioned to face the first surface of the polymer layer;
a first roller and a second roller defining a nip point configured and dimensioned to receive the polymer layer coupled with the support layer and the sheet.
11. The mold system of claim 10 , further comprising a material disposed between the sheet and the first surface of the polymer layer, the material configured to conform to the cavities of the first surface.
12. The mold system of claim 10 , wherein the polymer layer comprises a polymer material selected from the group consisting of: fluoropolyether, perfluoropolyether, poly(dimethylsiloxane), poly(tetramethylene oxide), poly(ethylene oxide), poly(oxetanes), polyisoprene, polybutadiene, and fluoroolefin-based fluoroelastomers.
13. The mold system of claim 10 , wherein the width to depth ratio is between about 100:1 and about 1,000:1.
14. The mold system of claim 10 , wherein the width to depth ratio is between about 10:1 and about 100:1.
15. The mold system of claim 10 , wherein the width to depth ratio is between about 5:1 and about 10:1.
16. The mold system of claim 10 , wherein the width to depth ratio is between about 2:1 and about 10:1.
17. The mold system of claim 10 , wherein the width to depth ratio is between about 1:1 and about 5:1.
18. The mold system of claim 10 , wherein the width to depth ratio is less than about 10:1.
19. The mold system of claim 10 , wherein the width to depth ratio is less than about 5:1.
20. The mold system of claim 10 , wherein the support layer is coupled with the polymer layer by a tie-layer disposed between the support layer and the second surface of the polymer layer.