The transition-metal sulfide, CuS, is deemed a promising material for energy storage, mainly derived from its good chemisorption and conductivity, although serious capacity fading limits its advancement within reversible lithium storage. Learning from the gold extraction method utilizing the lime-sulfur-synthetic-solution, a CuS@S hybrid utilizing CaSx as both sulfur resource and reductant–oxidant is prepared, which is an efficient approach to apply the metallurgy for the preparation of electrode materials. Regulating the amount of CuCl2, the CuS@S is induced to reach a molecular-level hybrid. When utilized as an anode within a lithium-ion battery, it presents the specific capacity of 514.4 mA h g–1 at 0.1 A g–1 over 200 cycles. Supported b...
CuS is a metal sulfide anode material used in constructing lithium ion batteries (LIBs) with great p...
Currently sodium-ion batteries (SIBs) as energy storage technology have attracted lots of interest d...
Owing to their high specific capacity and abundant reserve, Cu$_{x}$S compounds are promising electr...
Transition metal sulfides have shown to improve the performance of lithium-sulfur batteries both wit...
Copper sulfides (CuxS) with different stoichiometry are considered as prospective cathode materials ...
Copper sulfide (CuS) is an attractive electrode material for batteries, thanks to its intrinsic mixe...
Lithium–sulfur batteries offer theoretical capacities of 800–1600 mAh g–1 of active material and are...
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...
CuS is a metal sulfide anode material used in constructing lithium ion batteries (LIBs) with great ...
Copper powder was introduced into the lithium sulfur battery system to capture intermediate polysulf...
This thesis describes the development of a range of metal oxide, metal chalcogenide and metal alloy ...
CuS is considered as a promising electrode material for lithium-ion and sodium-ion batteries owing t...
To meet the ever-increasing energy demands, lithium ion batteries (LIBs) has become one of the most ...
Copper sulfide (CuS) nanorods with the size of sub-10 nm are synthesized via a facile sol gel method...
CuS is a metal sulfide anode material used in constructing lithium ion batteries (LIBs) with great p...
Currently sodium-ion batteries (SIBs) as energy storage technology have attracted lots of interest d...
Owing to their high specific capacity and abundant reserve, Cu$_{x}$S compounds are promising electr...
Transition metal sulfides have shown to improve the performance of lithium-sulfur batteries both wit...
Copper sulfides (CuxS) with different stoichiometry are considered as prospective cathode materials ...
Copper sulfide (CuS) is an attractive electrode material for batteries, thanks to its intrinsic mixe...
Lithium–sulfur batteries offer theoretical capacities of 800–1600 mAh g–1 of active material and are...
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...
CuS is a metal sulfide anode material used in constructing lithium ion batteries (LIBs) with great ...
Copper powder was introduced into the lithium sulfur battery system to capture intermediate polysulf...
This thesis describes the development of a range of metal oxide, metal chalcogenide and metal alloy ...
CuS is considered as a promising electrode material for lithium-ion and sodium-ion batteries owing t...
To meet the ever-increasing energy demands, lithium ion batteries (LIBs) has become one of the most ...
Copper sulfide (CuS) nanorods with the size of sub-10 nm are synthesized via a facile sol gel method...
CuS is a metal sulfide anode material used in constructing lithium ion batteries (LIBs) with great p...
Currently sodium-ion batteries (SIBs) as energy storage technology have attracted lots of interest d...
Owing to their high specific capacity and abundant reserve, Cu$_{x}$S compounds are promising electr...