Carbon aerogel-based cathodes for lithium-sulfur batteries
Nanoporous carbon-based scaffolds or structures, and specifically carbon aerogels and their manufacture and use thereof. Embodiments include a sulfur-doped cathode material within a lithium-sulfur battery, where the cathode is collector-less and is formed of a binder-free, monolithic, polyimide-derived carbon aerogel. The carbon aerogel includes pores that surround elemental sulfur and accommodate expansion of the sulfur during conversion to lithium sulfide. The cathode and underlying carbon aerogel provide optimal properties for use within the lithium-sulfur battery.
1. A nanoporous carbon material comprising:
a carbon aerogel material comprising a fibrillar morphology that comprises a plurality of interconnected structures, wherein the plurality of interconnected structures comprises a plurality of carbonized struts having a strut width of from 2 nm to 10 nm and wherein the plurality of interconnected structures define a plurality of pores;
elemental sulfur disposed within a pore of the plurality of pores; and
wherein the carbon aerogel material has an electrical conductivity of at least 1 S/cm.
2. The nanoporous carbon material of claim 1 , wherein the carbon aerogel material has a density between about 0.10 g/cc and about 1.5 g/cc.
3. The nanoporous carbon material of claim 1 , wherein the carbon aerogel material has a Young modulus of at least about 0.2 GPa.
4. The nanoporous carbon material of claim 1 , wherein the carbon aerogel material comprises residual nitrogen.
5. The nanoporous carbon material of claim 1 , wherein the carbon aerogel material is in a monolith form.
6. The nanoporous carbon material of claim 5 , wherein the carbon aerogel material is in a monolith form and is substantially or completely binder-free.
7. The nanoporous carbon material of claim 1 , wherein the plurality of pores form interconnected porous structures that surround the elemental sulfur.
8. The nanoporous carbon material of claim 1 , wherein the carbon aerogel material is doped with about 5%-90% of the elemental sulfur by weight of the carbon aerogel material.
9. The nanoporous carbon material of claim 1 , wherein the nanoporous carbon material has a half-cell capacity of from 800 mAh/g to 1700 mAh/g.
10. A collector-less, binder-less, interconnected cathode material for a lithium-sulfur battery comprising an open-cell, nanoporous carbon aerogel that includes residual nitrogen, the nanoporous carbon aerogel having a fibrillar network that comprises a plurality of interconnected, carbonized struts characterized by a strut width of from 2 nm to 10 nm, wherein the plurality of interconnected, carbonized struts define a plurality of pores, the nanoporous carbon aerogel having an electrical conductivity of at least about 1 S/cm; and a particle of elemental sulfur disposed within a pore of the plurality of pores.
11. The nanoporous carbon material of claim 1 , wherein the elemental sulfur comprises a particle of elemental sulfur in contact with an interior pore wall of the pore.
12. The nanoporous carbon material of claim 1 , wherein the elemental sulfur comprises a conformal coating on a carbon surface of an interior of the pore.
13. The nanoporous carbon material of claim 1 , further comprising from 15% to 90% of the elemental sulfur by weight of the carbon aerogel material.