Although single-atom catalysts significantly improve the atom utilization efficiency, the multistep preparation procedures are complicated and difficult to control. Herein, we demonstrate that one-step in situ synthesis of the single-atom Pt anchored in single-crystal MoC (Pt1/MoC) by using facile and controllable arc-discharge strategy under extreme conditions. The high temperature (up to 4000°C) provides the sufficient energy for atom dispersion and overall stability by forming thermodynamically favourable metal-support interactions. The high-temperature-stabilized Pt1/MoC exhibits outstanding performance and excellent thermal stability as durable catalyst for selective quinoline hydrogenation. The initial turnover frequency of 3710 h-1 i...
The current energy and climate crises urgently demand the global energy system to transition away fr...
Single-atom catalysts exhibit high selectivity in hydrogenation due to their isolated active sites, ...
Propylene production via propane dehydrogenation (PDH) requires high reaction temperatures to obtain...
Single-atom metal catalysts offer a promising way to utilize precious noble metal elements more effe...
In coordination chemistry, catalytically active metal complexes in a zero- or low-valent state often...
Improving the platinum (Pt) mass activity for low-cost electrochemical hydrogen evolution is an impo...
Heterogeneous single-atom catalyst (SAC) opens a unique entry to establishing structure-performance ...
Platinum is ubiquitous in the production sectors of chemicals and fuels; however, its scarcity in na...
Surface-supported isolated atoms in single-atom catalysts (SACs) are usually stabilized by diverse d...
Currently, Pt single atoms as promising electrocatalysts have been applied to electrocatalysis aimin...
Summary: Strong metal-support interaction (SMSI) has been widely used to improve catalytic performan...
© 2018, The Author(s), under exclusive licence to Springer Nature Limited. Single-atom catalysts off...
From Springer Nature via Jisc Publications RouterHistory: received 2021-01-22, rev-recd 2021-06-25, ...
Single-atom catalysts (SACs) play a key role in many chemical processes owing to highly desirable at...
Selective hydrogenation of acetylene in excess ethylene is an important reaction in both fundamental...
The current energy and climate crises urgently demand the global energy system to transition away fr...
Single-atom catalysts exhibit high selectivity in hydrogenation due to their isolated active sites, ...
Propylene production via propane dehydrogenation (PDH) requires high reaction temperatures to obtain...
Single-atom metal catalysts offer a promising way to utilize precious noble metal elements more effe...
In coordination chemistry, catalytically active metal complexes in a zero- or low-valent state often...
Improving the platinum (Pt) mass activity for low-cost electrochemical hydrogen evolution is an impo...
Heterogeneous single-atom catalyst (SAC) opens a unique entry to establishing structure-performance ...
Platinum is ubiquitous in the production sectors of chemicals and fuels; however, its scarcity in na...
Surface-supported isolated atoms in single-atom catalysts (SACs) are usually stabilized by diverse d...
Currently, Pt single atoms as promising electrocatalysts have been applied to electrocatalysis aimin...
Summary: Strong metal-support interaction (SMSI) has been widely used to improve catalytic performan...
© 2018, The Author(s), under exclusive licence to Springer Nature Limited. Single-atom catalysts off...
From Springer Nature via Jisc Publications RouterHistory: received 2021-01-22, rev-recd 2021-06-25, ...
Single-atom catalysts (SACs) play a key role in many chemical processes owing to highly desirable at...
Selective hydrogenation of acetylene in excess ethylene is an important reaction in both fundamental...
The current energy and climate crises urgently demand the global energy system to transition away fr...
Single-atom catalysts exhibit high selectivity in hydrogenation due to their isolated active sites, ...
Propylene production via propane dehydrogenation (PDH) requires high reaction temperatures to obtain...