Traditional synthetic routes for transition metal sulfides typically involve solution and thermal-based processes to exploit their favorable pseudo-capacitive properties. However, there is a practical need to develop alternative processes to fabricate metal sulfide electrodes because of the time-consuming processes (>12 h), additional heat-treatment to active reactants, relatively high post-heat-treatment temperature (200-400 °C) and non-scalable nature of existing synthetic routes. Herein, utilizing a solution-based sulfur precursor, one-dimensional single-crystalline Cu 2 S nanostructures have been successfully prepared via a solution-based direct synthesis process within 10 min at room temperature without the need for thermal treatment s...
We report the synthesis of ultralong copper sulfide nanowires (Cu2−xSNWs) through the sulphidation r...
An in-planar two-dimensional supercapacitor was fabricated utilizing chemically deposited copper sul...
The fascinating properties of transition metal chalcogenides, including their distinctive morphologi...
Traditional synthetic routes for transition metal sulfides typically involve solution and thermal-ba...
Supercapacitors have been one of the highest potential candidates for energy storage because of thei...
To achieve the further development of supercapacitors (SCs), which have intensively received attenti...
To achieve the further development of supercapacitors (SCs), which have intensively received attenti...
To achieve the further development of supercapacitors (SCs), which have intensively received attenti...
Producing thermoelectric materials without energy-intensive processes is essential to reduce the pro...
Copper sulfide has been regarded as a promising thermoelectric material with relatively high thermoe...
Copper sulfide has been regarded as a promising thermoelectric material with relatively high thermoe...
Transition metal sulfides such as Ni–Co sulfides are promising electrode materials for supercapacito...
We report the synthesis of ultralong copper sulfide nanowires (Cu2−xSNWs) through the sulphidation r...
We report the synthesis of ultralong copper sulfide nanowires (Cu2−xSNWs) through the sulphidation r...
We report the synthesis of ultralong copper sulfide nanowires (Cu2−xSNWs) through the sulphidation r...
We report the synthesis of ultralong copper sulfide nanowires (Cu2−xSNWs) through the sulphidation r...
An in-planar two-dimensional supercapacitor was fabricated utilizing chemically deposited copper sul...
The fascinating properties of transition metal chalcogenides, including their distinctive morphologi...
Traditional synthetic routes for transition metal sulfides typically involve solution and thermal-ba...
Supercapacitors have been one of the highest potential candidates for energy storage because of thei...
To achieve the further development of supercapacitors (SCs), which have intensively received attenti...
To achieve the further development of supercapacitors (SCs), which have intensively received attenti...
To achieve the further development of supercapacitors (SCs), which have intensively received attenti...
Producing thermoelectric materials without energy-intensive processes is essential to reduce the pro...
Copper sulfide has been regarded as a promising thermoelectric material with relatively high thermoe...
Copper sulfide has been regarded as a promising thermoelectric material with relatively high thermoe...
Transition metal sulfides such as Ni–Co sulfides are promising electrode materials for supercapacito...
We report the synthesis of ultralong copper sulfide nanowires (Cu2−xSNWs) through the sulphidation r...
We report the synthesis of ultralong copper sulfide nanowires (Cu2−xSNWs) through the sulphidation r...
We report the synthesis of ultralong copper sulfide nanowires (Cu2−xSNWs) through the sulphidation r...
We report the synthesis of ultralong copper sulfide nanowires (Cu2−xSNWs) through the sulphidation r...
An in-planar two-dimensional supercapacitor was fabricated utilizing chemically deposited copper sul...
The fascinating properties of transition metal chalcogenides, including their distinctive morphologi...