Solid lithium ion conducting electrolytes and methods of preparation
A composition comprised of nanoparticles of lithium ion conducting solid oxide material, wherein the solid oxide material is comprised of lithium ions, and at least one type of metal ion selected from pentavalent metal ions and trivalent lanthanide metal ions. Solution methods useful for synthesizing these solid oxide materials, as well as precursor solutions and components thereof, are also described. The solid oxide materials are incorporated as electrolytes into lithium ion batteries.
1. A composition comprised of nanoparticles of lithium ion conducting solid oxide material, wherein the lithium ion conducting solid oxide material is an oxide composition comprised of lithium ions, and at least one type of metal ion selected from pentavalent metal ions and trivalent lanthanide metal ions, wherein said nanoparticles have an average diameter of up to 5 nm.
2. The composition of claim 1 , wherein the lithium ion conducting solid oxide material is an oxide composition comprised of lithium ions, at least one type of pentavalent metal ion, and at least one type of metal ion selected from trivalent lanthanide metal ions and alkaline earth metal ions.
3. The composition of claim 2 , wherein the lithium ion conducting solid oxide material comprises at least one material selected from among materials having the following formulas:
Li 5+x Ln 2 AM 2 O 11.5+0.5x (1)
and
Li 5+y A y Ln 3−y M 2 O 12 (2)
wherein A represents at least one alkaline earth metal, M represents at least one pentavalent metal, Ln represents at least one trivalent lanthanide metal, and x and y are, independently, a number from 0 to 2.
4. The composition of claim 1 , wherein said pentavalent metal ions are selected from pentavalent niobium, tantalum, and antimony ions.
5. The composition of claim 1 , wherein said composition is in the form of a powder.
6. The composition of claim 1 , wherein said composition is in the form of a thin film up to 1 micron in thickness.
7. The composition of claim 1 , wherein said nanoparticles have an average diameter of less than 5 nm.