Dendrite-suppressing ion-conductors from aramid nanofibers withstanding extreme battery conditions
Ion conducting membranes based on aramid nanofibers (ANFs) can be prepared using layer-by-layer assembly, sol-gel processing, evaporation, spin coating, doctor blading, or other methods. Porosity is controlled through choice of additives and processing.
1. A free standing film, comprising alternating layers of aramid nanofibers (ANF) and polyalkylene oxide and having from 5 to 500 alternating layers of ANF and polyalkylene oxide.
2. A free standing film, comprising alternating layers of aramid nanofibers (ANF) and polyalkylene oxide and having at least 10 alternating layers of ANF and PEO.
3. The film according to claim 2 , having a thickness of 3 microns or greater.
4. The free standing film of claim 2 , further comprising nanoparticles, wherein the ratio of weight of the nanoparticles to the nanofibers is from 1:2 to 2:1.
5. The free standing film of claim 4 , wherein the ratio is from 1.2:1 to 1:1.
6. The film according to claim 2 , having a thickness of 500 nm or greater.
7. An electrode assembly, comprising a cathode, and anode, and an ion conducting membrane (ICM) disposed between the cathode and anode, wherein the ICM comprises aramid nanofibers and polyoxyalkylene oxide, wherein the ICM has the structure (PEO/ANF) n , where n is from 5 to 500 and where PEO/ANF represents alternating layers of polyethylene oxide and aramid nanofiber.
8. The electrode assembly of claim 7 , wherein at least one of the cathode and anode is a lithium metal electrode.
9. A lithium cell comprising an electrode assembly according to claim 7 .
10. A lithium battery comprising a plurality of cells according to claim 9 .
11. The free standing film of claim 4 , wherein the nanoparticles comprise particles selected from silica, alumina, zirconia, titania, magnesium oxide, and calcium oxide.
12. The free standing film of claim 4 , having a thickness in the range from 5 microns to 100 microns.
13. The free standing film of claim 12 , wherein the thickness is about 10 microns.