Controlling the hybridization of single atoms in suitable host materials opens unique opportunities for catalyst design, but equally faces many challenges. Here, we highlight emerging directions from the last, highly productive, decade in single-atom catalysis and identify frontiers for future research.ISSN:2041-172
Single-atom catalysis, the catalysis by single-atom catalysts (sacs), has attracted considerable att...
International audienceCatalytic active sites consisting in isolated metal single atoms can be found ...
Single atom catalysis (SAC) is a recent discipline of heterogeneous catalysis for which a single ato...
Controlling the hybridization of single atoms in suitable host materials opens unique opportunities ...
Recent advances in single-atom catalysis resulted in readily accessible materials whose application ...
The idea that single metal atoms dispersed on a solid support can act as an efficient heterogeneous ...
Single-atom catalysis has rapidly progressed during the last few years. In 2017, single-atom catalys...
Single-atom catalysts hold the potential to significantly impact the chemical sector, pushing the bou...
Due to excellent performance properties such as strong activity and high selectivity, single-atom ca...
Single-atom catalysts (SACs) containing "single-site" centers have become a distinct categ...
The green synthesis of fine chemicals calls for a new generation of efficient and robust catalysts. ...
The emergence of single atom sites as a frontier research area in catalysis has sparked extensive ac...
Isolated atoms featuring unique reactivity are at the heart of enzymatic and homogeneous catalysts. ...
Single-atom catalysts (SACs) hold great promise for maximized metal utilization, exceptional tunabil...
Summary: Active components with suitable supports are the common paradigm for industrial catalysis, ...
Single-atom catalysis, the catalysis by single-atom catalysts (sacs), has attracted considerable att...
International audienceCatalytic active sites consisting in isolated metal single atoms can be found ...
Single atom catalysis (SAC) is a recent discipline of heterogeneous catalysis for which a single ato...
Controlling the hybridization of single atoms in suitable host materials opens unique opportunities ...
Recent advances in single-atom catalysis resulted in readily accessible materials whose application ...
The idea that single metal atoms dispersed on a solid support can act as an efficient heterogeneous ...
Single-atom catalysis has rapidly progressed during the last few years. In 2017, single-atom catalys...
Single-atom catalysts hold the potential to significantly impact the chemical sector, pushing the bou...
Due to excellent performance properties such as strong activity and high selectivity, single-atom ca...
Single-atom catalysts (SACs) containing "single-site" centers have become a distinct categ...
The green synthesis of fine chemicals calls for a new generation of efficient and robust catalysts. ...
The emergence of single atom sites as a frontier research area in catalysis has sparked extensive ac...
Isolated atoms featuring unique reactivity are at the heart of enzymatic and homogeneous catalysts. ...
Single-atom catalysts (SACs) hold great promise for maximized metal utilization, exceptional tunabil...
Summary: Active components with suitable supports are the common paradigm for industrial catalysis, ...
Single-atom catalysis, the catalysis by single-atom catalysts (sacs), has attracted considerable att...
International audienceCatalytic active sites consisting in isolated metal single atoms can be found ...
Single atom catalysis (SAC) is a recent discipline of heterogeneous catalysis for which a single ato...