Organic polymer aerogels comprising microstructures
An organic polymer aerogel that includes an organic polymer gel matrix and microstructures dispersed or embedded within the aerogel is disclosed. The aerogel can have an at least bimodal pore size distribution comprising a first peak of less than or equal to 65 nm and a second peak greater than or equal to 100 nm.
1. An open-celled polymeric material comprising an organic polymer gel matrix and microstructures dispersed or embedded within the organic polymer gel matrix, wherein the organic polymer gel matrix has an at least bimodal pore size distribution comprising a first peak of less than or equal to 65 nm and a second peak greater than or equal to 100 nm.
2. The open-celled organic polymer material of claim 1 , wherein the material has a thermal conductivity of less than or equal to 40 mW/m·K at a temperature of 20° C.
3. The open-celled organic polymer material of claim 2 , wherein the material has a thermal conductivity of 10 to 40 mW/m K at a temperature of 20° C.
4. The open-celled organic polymer material of claim 1 , wherein the material has a thickness of 1 millimeter (mm) or less.
5. The open-celled organic polymer material of claim 4 , wherein the material has a thickness of 0.125 mm to 1 mm.
6. The open-celled organic polymer material of claim 1 , wherein the material has a thickness of 1 millimeter (mm) or more.
7. The open-celled organic polymer material of claim 6 , wherein the material has a thickness of 1 mm to 50 mm.
8. The open-celled organic polymer material of claim 1 , wherein the first peak is 1 nm to 15 nm.
9. The open-celled organic polymer material of claim 1 , wherein the second peak is 100 nm to 500 nm.
10. The open-celled organic polymer material of claim 1 , wherein the microstructures comprise carbon particles.
11. The open-celled organic polymer material of claim 1 , wherein the microstructures comprise inorganic microstructures.
12. The open-celled organic polymer material of claim 11 , wherein the inorganic microstructures comprise glass fibers.
13. The open-celled organic polymer material of claim 1 , wherein the microstructures are polymeric microstructures.
14. The open-celled organic polymer material of claim 13 , wherein the polymeric microstructures comprise one or more of aramid fibers, polyester fibers, poly (tetrafluoroethylene) (PTFE) particles, or aerogel powder particles.
15. The open-celled organic polymer material of claim 1 , wherein the microstructures comprise 1 wt. % to 50 wt. % of the material.
16. The open-celled organic polymer material of claim 1 , wherein the organic polymer gel matrix comprises resorcinol formaldehyde, phenol formaldehyde, polyimide, polyamine, polyamide, poly (amide-imide), poly (amic amide), poly (ether imide), polyphenol, polyalcohol, polyvinyl butryal, polyurethane, polyurea, polycarbonate, polyester, polyether, or polyacid, or any combination thereof.
17. The open-celled organic polymer material of claim 16 , wherein the organic polymer gel matrix comprises polyimide.
18. The open-celled organic polymer material of claim 1 , wherein the material has a density of 0.1 g/cm 3 to 0.5 g/cm 3 , a pore volume of greater than 2 cm 3 /g, and a surface area of at least 150 m 2 /g.
19. The open-celled organic polymer material of claim 1 , wherein the material has a tensile strength of at least 2 MPa and a compression strength at 10% strain of at least 1.0 MPa.
20. The open-celled organic polymer material of claim 1 , comprised in an article of manufacture.
21. The open-celled organic polymer material of claim 20 , wherein the article of manufacture is an insulative material for an automotive application.
22. The open-celled organic polymer material of claim 20 , wherein the article of manufacture is an insulative material for a wire or a cable.
23. The open-celled organic polymer material of claim 20 , wherein the article of manufacture is an insulative material for an aerospace application.