Liquid-type room-temperature fluoride ion batteries
The present disclosure relates to fluoride ion batteries and structures of metal based electrode materials for various fluoride ion batteries. The structures of the metal based electrode materials comprise one or more shells or interfaces, enabling the electrodes to operate at room temperature with a liquid electrolyte.
1. A fluoride ion battery comprising:
an anode containing an alkali earth metal, a rare earth metal, or a combination thereof, and having an outer solid electrolyte interphase layer;
a cathode comprising a cathode core containing a transition metal, a lanthanide, an actinide, or a combination thereof and a fluoride-containing shell at least partially surrounding the cathode core, wherein the fluoride-containing shell comprises a first metal and a second metal, and the first metal is barium; and
a liquid electrolyte comprising fluoride ions between the anode and the cathode,
wherein the outer solid electrolyte interphase layer comprises a fluoroalkyl, the fluoroalkyl comprising CF 3 (CF 2 ) x CH 2 , wherein x is 2-5.
2. The fluoride ion battery of claim 1 , wherein the liquid electrolyte comprises bis(2-methoxyethyl) ether, bis(2,2,2-trifluoroethyl) ether, N,N,N-trimethyl-N-neopentylammonium fluoride, N,N-dimethyl-N,N-dineopentylammonium fluoride, propionitrile, or a combination thereof.
3. The fluoride ion battery of claim 1 , wherein the cathode core has at least one dimension less than or equal to about 25 nm.
4. The fluoride ion battery of claim 1 , wherein the cathode core comprises a transition metal selected from the group consisting of copper, iron, lead, bismuth, cobalt, alloys thereof, fluorides thereof, and combinations thereof.
5. The fluoride ion battery of claim 1 , wherein the alkali earth metal is calcium, and the rare earth metal is selected from cerium and lanthanum.
6. The fluoride ion battery of claim 1 , wherein the outer solid electrolyte interphase layer is covalently attached to the anode, and wherein the fluoroalkyl comprises CF 3 (CF 2 ) 5 CH 2 , CF 3 (CF 2 ) 2 CH 2 , or a combination thereof.
7. The fluoride ion battery of claim 1 , wherein the second metal is a transition metal, an alkali metal, an alkaline earth metal, a group three element, a group thirteen element, a lanthanide, an actinide, or a combination thereof.
8. The fluoride ion battery of claim 1 , wherein the fluoride-containing shell contains La 1-x Ba x F 3-x , wherein X=0-0.5.
9. The fluoride ion battery of claim 1 , wherein the fluoride-containing shell contains La 1-x Ba x F 3-x , wherein X=0.03.
10. The fluoride ion battery of claim 1 , wherein fluoride-containing shell has an average thickness of no more than 5 nm.
11. A fluoride ion battery comprising:
an anode containing an alkali earth metal, a rare earth metal, or a combination thereof, and having an outer solid electrolyte interphase layer;
a cathode comprising a cathode core containing a transition metal, a lanthanide, an actinide, or a combination thereof and a fluoride-containing shell at least partially surrounding the cathode core, wherein the fluoride-containing shell comprises a first metal and a second metal, and the first metal is barium; and
a liquid electrolyte comprising fluoride ions between the anode and the cathode,
wherein the outer solid electrolyte interphase layer comprises a reaction derivative formed between a diazonium salt and a surface of the anode.
12. The fluoride ion battery of claim 11 , wherein the comprises 4-tert-butylbenzene diazonium salt; 4-methoxybenzene diazonium salt; 4-(dimethylamino)benzene diazonium salt; 4-nitrobenzene diazonium salt; 4-trifluoromethylbenzene diazonium salt; or a combination thereof.