Metal fluoride and phosphate nanocomposites as electrode materials
The present invention relates to primary and secondary electrochemical energy storage systems. More particularly, the present invention relates to such systems as battery cells, especially battery cells utilizing metal fluorides with the presence of phosphates or fluorophosphates, which use materials that take up and release ions as a means of storing and supplying electrical energy.
1. A battery cell comprising:
(a) a positive electrode comprising a nanocomposite; and
(b) a solid electrolyte,
wherein the positive electrode is characterized by a specific capacity of about 100 mAh/g to 600 mAh/g at a voltage of about 2 volts to about 4 volts when measured against a Li/Li + reference potential,
wherein the nanocomposite comprises a metal fluoride component, conductive matrix, and a phosphate matrix,
wherein the metal fluoride component is characterized by a particle size about 1 nm to about 100 nm,
wherein the metal fluoride component is selected from the group consisting of CuF 2 , BiF 3 , CoF 3 , AgF, MnF 3 , NiF 2 , and FeF 3 , and
wherein the conductive matrix comprises sulfur.
2. The battery cell according to claim 1 , wherein the conductive matrix is from about 5% to about 50% weight of the nanocomposite.
3. The battery cell according to claim 1 , wherein the phosphate matrix is from about 2% to about 50% weight of the nanocomposite.
4. The battery cell according to claim 1 , wherein the nanocomposite is x-ray amorphous.
5. The battery cell according to claim 1 , wherein the conductive matrix comprises intercalation compounds.
6. The battery cell according to claim 1 , wherein the metal fluoride component is FeF 3 .
7. The battery cell according to claim 1 , wherein the nanocomposite further comprises carbon or oxygen.
8. The battery cell according to claim 1 , further comprising a negative electrode, wherein the negative electrode comprises lithium.
9. The battery cell according to claim 1 , wherein the positive electrode is rechargeable.