Core-shell structured nanoparticles for lithium-sulfur cells
Described is a core-shell nanoparticle comprising a lithium sulfide nanoparticle core and a shell covering the lithium sulfide nanoparticle core, the shell comprising at least one of carbon, polyanaline or a transition metal sulfide. The core-shell nanoparticle may be used for a positive electrode in a lithium/sulfur battery cell.
1. A positive electrode for a lithium-sulfur cell, the positive electrode comprising a plurality of core-shell nanoparticles, each core-shell nanoparticle comprising:
a single non-hollow lithium sulfide nanoparticle core; and
a single shell contacting the entire external surface of the single non-hollow lithium sulfide nanoparticle core, the single shell comprising a transition metal sulfide.
2. The positive electrode of claim 1 , wherein each core-shell nanoparticle has a size of approximately 200-300 nanometers.
3. The positive electrode of claim 2 , wherein each respective single non-hollow lithium sulfide nanoparticle core is convertible into a single sulfur nanoparticle core having a reduced size compared to the size of the respective single non-hollow lithium sulfide nanoparticle core, and wherein each core-shell nanoparticle retains the size of approximately 200-300 nanometers after the respective single non-hollow lithium sulfide nanoparticle core is converted into the single sulfur nanoparticle core.
4. The positive electrode of claim 1 , wherein a thickness of each respective single shell is approximately 1-10 nanometers.
5. The positive electrode of claim 4 , wherein a thickness of each respective single shell is approximately 1-2 nanometers.
6. The positive electrode of claim 1 , wherein each respective single shell is a titanium disulfide shell.
7. The positive electrode of claim 6 , wherein each respective single shell is formed by reacting the respective single non-hollow lithium sulfide nanoparticle core with titanium tetrachloride.