Cobalt sulfides are good candidate anode materials for lithium ion storage for their high theoretical capacities. However, their electrochemical performance is restricted by their volume change during the cycles, leading to a sharp capacity fading in the subsequent process. To overcome these disadvantages, ultrathin nanosheets assembled hierarchical cobalt sulfides@C hollow spheres are fabricated by a hydrothermal and subsequent carbon enwrapping strategy. The as-prepared hierarchical Co<sub>9</sub>S<sub>8</sub>@C hollow spheres deliver an enhanced electrochemical performance with both long-term cyclability and reversible specific capacities. 823 mA h g<sup>–1</sup> reversible capacity could be maintained after 200 cycles at a current densi...
Nickel oxide microspheres with porous multi-shelled structure were synthesized via a sequential temp...
A proof-of-concept structural design is demonstrated for high-capacity lithium-ion batteries anode m...
Metal sulfides with multi-shelled hollow structures are promising electrode materials for rechargeab...
CoS and NiS nanomaterials anchored on reduced graphene oxide (rGO) sheets, synthesized via combinati...
Hierarchical hollow microspheres with nickel sulfide (NiS) nanorods as the in situ formed building b...
Lithium–sulfur batteries are a promising next-generation energy storage device owing to their high t...
Hierarchical MoS₂ shells supported on carbon spheres (denoted as C@MoS₂) have been synthesized throu...
Lithium-sulfur (Li-S) batteries are considered to be one of the most promising candidates for the ne...
Inhibiting the shuttle effect of soluble polysulfides and improving slow reaction kinetics are key f...
Constructing hollow architectures based on metal sulfides is of great interest for high-performance ...
© 2019 IOP Publishing Ltd. We design a facile approach to prepare a bimetallic transition-metal-sulp...
The advantages of high energy density and low cost make lithium–sulfur batteries one of the most pro...
Progression in the renewable energy field is tied to the development of high-performance energy stor...
Lithium–sulfur (Li–S) batteries have exhibited tremendous potential among the various secondary batt...
The shuttle effect of dissolved polysulfides migrating to and depositing on anodes often leads to lo...
Nickel oxide microspheres with porous multi-shelled structure were synthesized via a sequential temp...
A proof-of-concept structural design is demonstrated for high-capacity lithium-ion batteries anode m...
Metal sulfides with multi-shelled hollow structures are promising electrode materials for rechargeab...
CoS and NiS nanomaterials anchored on reduced graphene oxide (rGO) sheets, synthesized via combinati...
Hierarchical hollow microspheres with nickel sulfide (NiS) nanorods as the in situ formed building b...
Lithium–sulfur batteries are a promising next-generation energy storage device owing to their high t...
Hierarchical MoS₂ shells supported on carbon spheres (denoted as C@MoS₂) have been synthesized throu...
Lithium-sulfur (Li-S) batteries are considered to be one of the most promising candidates for the ne...
Inhibiting the shuttle effect of soluble polysulfides and improving slow reaction kinetics are key f...
Constructing hollow architectures based on metal sulfides is of great interest for high-performance ...
© 2019 IOP Publishing Ltd. We design a facile approach to prepare a bimetallic transition-metal-sulp...
The advantages of high energy density and low cost make lithium–sulfur batteries one of the most pro...
Progression in the renewable energy field is tied to the development of high-performance energy stor...
Lithium–sulfur (Li–S) batteries have exhibited tremendous potential among the various secondary batt...
The shuttle effect of dissolved polysulfides migrating to and depositing on anodes often leads to lo...
Nickel oxide microspheres with porous multi-shelled structure were synthesized via a sequential temp...
A proof-of-concept structural design is demonstrated for high-capacity lithium-ion batteries anode m...
Metal sulfides with multi-shelled hollow structures are promising electrode materials for rechargeab...