Copper sulfides (CuxS) with different stoichiometry are considered as prospective cathode materials for lithium batteries owing to their large energy storage capability. In this work, three-dimensional CuxS cathodes were synthesized via introducing commercially available copper foam into the solution of dimethyl sulfoxide (DMSO) and sulfur powder. The synthesis procedures were straightforward and ultrafast and did not require additional reagents, high temperature, or long processing time and can be considered as a facile one-step method. Copper sulfide materials with different stoichiometry (x = 1.8, 1.96) were obtained by changing the temperature and the residence time of the copper foam in the DMSO solution. The effects of the temperature...
Copper sulfide (Cu7S4) nanoparticles were synthesized by adding ethanolic elemental sulfur solution ...
Copper sulfide nanowires/reduced graphene oxide (CuSNWs/rGO) nanocompsites are successfully synthesi...
Lithium–sulfur batteries offer theoretical capacities of 800–1600 mAh g–1 of active material and are...
Conductive and flexible CuS films with unique hierarchical nanocrystalline branches directly grown o...
Novel copper sulfide (CuS) nanowire bundles with a diameter of about 6 nm and a length up to several...
Currently, different metal sulfides (NiS, Co9S8, FeS2, and CuS) have been extensively studied as alt...
Copper sulfide (CuS) is an attractive electrode material for batteries, thanks to its intrinsic mixe...
Copper sulfide (CuS) is an attractive electrode material for batteries, thanks to its intrinsic mixe...
Copper sulfide (CuS) nanorods with the size of sub-10 nm are synthesized via a facile sol gel method...
In this paper, we synthesized a new cathode material (Cu3BiS3) by a solvothermal method for high-per...
CuS nanostructured materials, including nanoflakes, microspheres composed of nanoflakes, microflower...
Sulfur and metal sulfides have been the materials of choice for the cathodes to achieve high energy ...
Copper sulfide nanowires/reduced graphene oxide (CuSNWs/rGO) nanocompsites are successfully synthesi...
The transition-metal sulfide, CuS, is deemed a promising material for energy storage, mainly derived...
Copper powder was introduced into the lithium sulfur battery system to capture intermediate polysulf...
Copper sulfide (Cu7S4) nanoparticles were synthesized by adding ethanolic elemental sulfur solution ...
Copper sulfide nanowires/reduced graphene oxide (CuSNWs/rGO) nanocompsites are successfully synthesi...
Lithium–sulfur batteries offer theoretical capacities of 800–1600 mAh g–1 of active material and are...
Conductive and flexible CuS films with unique hierarchical nanocrystalline branches directly grown o...
Novel copper sulfide (CuS) nanowire bundles with a diameter of about 6 nm and a length up to several...
Currently, different metal sulfides (NiS, Co9S8, FeS2, and CuS) have been extensively studied as alt...
Copper sulfide (CuS) is an attractive electrode material for batteries, thanks to its intrinsic mixe...
Copper sulfide (CuS) is an attractive electrode material for batteries, thanks to its intrinsic mixe...
Copper sulfide (CuS) nanorods with the size of sub-10 nm are synthesized via a facile sol gel method...
In this paper, we synthesized a new cathode material (Cu3BiS3) by a solvothermal method for high-per...
CuS nanostructured materials, including nanoflakes, microspheres composed of nanoflakes, microflower...
Sulfur and metal sulfides have been the materials of choice for the cathodes to achieve high energy ...
Copper sulfide nanowires/reduced graphene oxide (CuSNWs/rGO) nanocompsites are successfully synthesi...
The transition-metal sulfide, CuS, is deemed a promising material for energy storage, mainly derived...
Copper powder was introduced into the lithium sulfur battery system to capture intermediate polysulf...
Copper sulfide (Cu7S4) nanoparticles were synthesized by adding ethanolic elemental sulfur solution ...
Copper sulfide nanowires/reduced graphene oxide (CuSNWs/rGO) nanocompsites are successfully synthesi...
Lithium–sulfur batteries offer theoretical capacities of 800–1600 mAh g–1 of active material and are...