Polymer solid electrolyte for flexible batteries
A flexible polymer solid electrolyte material useful in battery technology is described. The flexible solid electrolyte comprises a first block that has the ability to solvate alkali metal salts. The flexible solid electrolyte comprises a second block that has the ability to incorporate lithium ions within microphase separated spherical domains, wherein the lithium ions are from a secondary lithium source. The flexible solid electrolyte further comprises a second lithium salt.
1. A solid polymer electrolyte comprising:
a) a diblock copolymer comprising a poly(ethylene oxide) block and a random copolymer block of methylmethacrylate and lithium salt of methacrylic acid; and
b) lithium bis(oxalate)borate.
2. The solid polymer electrolyte of claim 1 , wherein the solid polymer electrolyte has reduced crystallinity compared to poly(ethylene oxide) of similar molecular weight.
3. The solid polymer electrolyte of claim 1 , wherein the diblock copolymer is a PEO-b-PMMA block copolymer.
4. The solid polymer electrolyte of claim 3 , wherein the molecular weight ratio of PEO to PMMA is 6:1.
5. The solid polymer electrolyte of claim 1 , which is PEO-b-(PMMA-ran-PMAALi).
6. The solid polymer electrolyte of claim 1 , wherein the molecular weight ratio of poly(ethylene oxide) block to lithium bis(oxalate)borate is between 2:1 to 6:1.
7. The solid polymer electrolyte of claim 1 , wherein the lithium ions of the lithium salt of the diblock copolymer are incorporated within the microphase separated spherical domains of the methylmethacrylate block.
8. The solid polymer electrolyte of claim 1 , wherein the electrolye does not contain major proportions of non-conducting blocks.
9. The solid polymer electrolyte of claim 1 , wherein the molecular weight ratio of the poly(ethylene oxide) block to lithium bis(oxalate)borate is 3:1.
10. A battery comprising the solid polymer electrolyte of claim 1 .
11. A method of producing the solid polymer electrolyte of claim 1 comprising:
(a) hydrolyzing a solution of PEO-b-PMMA with lithium hydroxide in an organic solvent to give a diblock copolymer salt;
(b) drying the diblock copolymer salt produced by a); and
(c) dissolving said diblock copolymer salt in an organic solvent and adding lithium bis(oxalate to give a polymer solution.
12. The method of claim 11 , wherein the solution in a) is produced by adding a mixture of 1,4-dioxane and methanol.
13. The method of claim 11 , further comprising:
d) casting the polymer solution of c) into a Petri dish containing fluorinated ethylene propylene coated aluminum sheets; and
e) drying the polymer solution to produce a polymer electrolyte film.