Post processing filled microporous membranes
A porous membrane may be manufactured with a high content of filler material and a polymer binder. After forming the membrane, the membrane may be post processed to reform the polymer binder into a stronger yet still porous membrane. The post processing may include bringing the membrane above the melt temperature of the polymer or by immersing the membrane in a solvent. Photomicrographs show that the structure may change, yet the performance of the material in batteries and other electrochemical cells may remain the same or even improve.
1. A method comprising:
forming a microporous membrane by a liquid casting process using a solution comprising:
a polymer binder comprising PVDF;
a first filler material being a spherical filler material; and
a solvent dissolving the polymer binder;
said microporous membrane having a first manufactured state having:
at least 50% porosity; and
at least 10% by volume of said first filler material based on the total volume of the microporous membrane; and
post processing said microporous membrane having said polymer binder and at least 10% by volume of said first filler material based on the total volume of the microporous membrane by bringing said polymer binder comprising PVDF into at least a partially molten state for a sufficient time for the polymer binder comprising PVDF to completely wet the first filler material such that said polymer binder reforms after said post processing such that said microporous membrane has a second manufactured state being at least 50% porous and having the first filler material dispersed within a pore wall of said microporous membrane.
2. The method of claim 1 , wherein forming said microporous membrane comprises casting the solution over a nonwoven web reinforcement.
3. The method of claim 1 , said partially molten state being performed by heating said microporous membrane.
4. The method of claim 1 , said partially molten state being performed by bathing said microporous membrane in a solvent.
5. The method of claim 4 , said solvent being rinsed from said microporous membrane after said post processing.
6. The method of claim 1 , said first filler material comprising TiO 2 .
7. The method of claim 1 , said microporous membrane comprising a second filler material.
8. The method of claim 7 , said second filler material being a fibrous filler material.
9. The method of claim 8 , said fibrous filler material being wollastonite.
10. The method of claim 1 , said polymer binder consisting essentially of PVDF.
11. The method of claim 1 , said polymer binder further comprising one of a group composed of: polyethylene, polypropylene, PET, acrylic, PVC, and amide.
12. A method comprising:
forming a microporous membrane by a liquid casting process using a solution comprising:
a polymer binder comprising PVDF;
a first filler material being a spherical filler material; and
a solvent dissolving the polymer binder;
said microporous membrane having a first manufactured state having:
at least 50% porosity;
at least 10% by volume of said first filler material based on the total volume of the microporous membrane; and a pore wall thickness greater than the maximum dimension of said first filler material; and
post processing said microporous membrane having said polymer binder and at least 10% by volume of said first filler material based on the total volume of the microporous membrane by bringing said polymer binder comprising PVDF into at least a partially dissolved state for a sufficient time for the polymer binder comprising PVDF to completely wet the first filler material such that said polymer binder reforms after said post processing such that said microporous membrane having a second manufactured state being at least 50% porous and having the first filler material dispersed within the pore wall of said microporous membrane.
13. The method of claim 12 , said partially dissolved state being performed by bathing said microporous membrane in a solvent.
14. The method of claim 13 , wherein forming said microporous membrane comprises casting the solution over a nonwoven web reinforcement.
15. The method of claim 12 , said microporous membrane further comprising a second filler material.
16. The method of claim 15 , said second filler material being a fibrous filler material.
17. The method of claim 12 , said polymer binder further comprising one of a group composed of: polyethylene, polypropylene, PET, acrylic, PVC, and amide.
18. The method of claim 1 , wherein the solution of the liquid casting process further comprises a pore forming agent with a low solvating ability to the polymer binder.
19. The method of claim 1 , wherein a ratio of a pore diameter to a particle size of said first filler material in the microporous membrane is in the range of 2:1 to 10:1.
20. The method of claim 1 , wherein said microporous membrane having the first manufactured state having:
at least 50% porosity; and
at least 50% by volume of said first filler material based on the total volume of the microporous membrane; and wherein said post processing said microporous membrane having said polymer binder and at least 50% by volume of said first filler material based on the total volume of the microporous membrane by bringing said polymer binder comprising PVDF into at least a partially molten state for a sufficient time for the polymer binder comprising PVDF to completely wet the first filler material such that said polymer binder reforms after said post processing such that said microporous membrane has a second manufactured state being at least 50% porous and having the first filler material dispersed within a pore wall of said microporous membrane.