Long-life Li/polysulphide batteries with high sulphur loading enabled by lightweight three-dimensional nitrogen/sulphur-codoped graphene sponge
Citations Over TimeTop 1% of 2015 papers
Abstract
Lithium-sulphur batteries with a high theoretical energy density are regarded as promising energy storage devices for electric vehicles and large-scale electricity storage. However, the low active material utilization, low sulphur loading and poor cycling stability restrict their practical applications. Herein, we present an effective strategy to obtain Li/polysulphide batteries with high-energy density and long-cyclic life using three-dimensional nitrogen/sulphur codoped graphene sponge electrodes. The nitrogen/sulphur codoped graphene sponge electrode provides enough space for a high sulphur loading, facilitates fast charge transfer and better immobilization of polysulphide ions. The hetero-doped nitrogen/sulphur sites are demonstrated to show strong binding energy and be capable of anchoring polysulphides based on first-principles calculations. As a result, a high specific capacity of 1,200 mAh g(-1) at 0.2C rate, a high-rate capacity of 430 mAh g(-1) at 2C rate and excellent cycling stability for 500 cycles with ∼0.078% capacity decay per cycle are achieved.
Related Papers
- → Advances in the production of sponge biomass Aplysina aerophoba—A model sponge for ex situ sponge biomass production(2006)29 cited
- → Sponge (2′,5′)oligoadenylate synthetase activity in the whole sponge organism and in a primary cell culture(2002)9 cited
- A natural advantage? Using mined graphite to make graphene(2013)
- → Sponge Cell Adhesions(1978)7 cited
- Unique synthesis of graphene-based materials for clean energy and biological sensing applications(2012)