The optimization of catalyst synthesis conditions using traditional single factor method involves extensive experimental time and costs. To overcome the drawbacks, a uniform design method was applied in the hydrothermal synthesis of nano MoS2 catalyst. An optimal synthesis condition is reached with only a few trials. Catalyst synthesis temperature is reduced to 200 °C. The catalyst synthesized at the screened condition shows high hydrotreating activities. The results conclude that the catalyst has thread-like slabs with a lattice structure that is less mature than fully developed MoS2. The characterization results indicate that the appearance of such structure may be due to the weak links of successive MoS2 nuclei. The high catalytic a...
The morphology-performance relation is of great importance for designing a catalyst with high perfor...
Abstract Herein, we report the synthesis of metallic molybdenum microspheres and hierarchical MoS2 n...
Molybdenum sulfide (MoS2 ) has emerged as a promising catalyst for hydrogen evolution applications. ...
MoS2 nano-sheets with controllable structures were prepared using a hydrothermal method. Effects of ...
Designing MoS2 nanocatalysts rich with active edge sites by engineering of the nanostructures is an ...
MoS2 samples with controllable morphologies and structures were synthesized using surfactant assiste...
Flower-like intercalated MoS2 nanomaterials have been successfully synthesized via a microemulsion-m...
Molybdenum sulfide (MoS2 ) has emerged as a promising catalyst for hydrogen evolution applications. ...
Although preparation conditions are known to affect the morphology and catalytic performance of hydr...
Monodispersed MoS2 ultrathin nanosheets have been successfully fabricated by a facile hydrothermal p...
International audienceThe preparation of the intercalated lamellar hydrophobic nano-MoS 2 (size: 60-...
International audienceThe preparation of the intercalated lamellar hydrophobic nano-MoS 2 (size: 60-...
Molybdenum disulfide (MoS2) is an emerging material with exciting properties. Many consider it an ex...
MoS2 microflowers with the size of 3.9-5.8 mu m in diameter, which is constructed by nanosheets, are...
MoS2 microflowers with the size of 3.9-5.8 mu m in diameter, which is constructed by nanosheets, are...
The morphology-performance relation is of great importance for designing a catalyst with high perfor...
Abstract Herein, we report the synthesis of metallic molybdenum microspheres and hierarchical MoS2 n...
Molybdenum sulfide (MoS2 ) has emerged as a promising catalyst for hydrogen evolution applications. ...
MoS2 nano-sheets with controllable structures were prepared using a hydrothermal method. Effects of ...
Designing MoS2 nanocatalysts rich with active edge sites by engineering of the nanostructures is an ...
MoS2 samples with controllable morphologies and structures were synthesized using surfactant assiste...
Flower-like intercalated MoS2 nanomaterials have been successfully synthesized via a microemulsion-m...
Molybdenum sulfide (MoS2 ) has emerged as a promising catalyst for hydrogen evolution applications. ...
Although preparation conditions are known to affect the morphology and catalytic performance of hydr...
Monodispersed MoS2 ultrathin nanosheets have been successfully fabricated by a facile hydrothermal p...
International audienceThe preparation of the intercalated lamellar hydrophobic nano-MoS 2 (size: 60-...
International audienceThe preparation of the intercalated lamellar hydrophobic nano-MoS 2 (size: 60-...
Molybdenum disulfide (MoS2) is an emerging material with exciting properties. Many consider it an ex...
MoS2 microflowers with the size of 3.9-5.8 mu m in diameter, which is constructed by nanosheets, are...
MoS2 microflowers with the size of 3.9-5.8 mu m in diameter, which is constructed by nanosheets, are...
The morphology-performance relation is of great importance for designing a catalyst with high perfor...
Abstract Herein, we report the synthesis of metallic molybdenum microspheres and hierarchical MoS2 n...
Molybdenum sulfide (MoS2 ) has emerged as a promising catalyst for hydrogen evolution applications. ...