Supported metal nanoparticles play a pivotal role in areas such as nanoelectronics, energy storage/conversion1 and as catalysts for the sustainable production of fuels and chemicals2–4. However, the tendency of nanoparticles to grow into larger crystallites is an impediment for stable performance5,6. Exemplarily, loss of active surface area by metal particle growth is a major cause of deactivation for supported catalysts7. In specific cases particle growth might be mitigated by tuning the properties of individual nanoparticles, such as size8, composition9 and interaction with the support10. Here we present an alternative strategy based on control over collective properties, revealing the pronounced impact of the three-dimensional nanospatia...
A nanoparticle with well-defined surfaces, prepared through colloidal chemistry, enables it to be st...
The field of heterogeneous catalysis has received a remarkable amount of interest from scientific an...
Metallic nanoparticles finely dispersed over oxide supports have found use as heterogeneous catalyst...
Supported metal nanoparticles play a pivotal role in areas such as nanoelectronics, energy storage/c...
Supported metal nanoparticles play a pivotal role in areas such as nanoelectronics, energy storage/c...
Supported metal nanoparticles play a pivotal role in areas such as nanoelectronics, energy storage/c...
Particle growth is a major deactivation mechanism for supported metal catalysts. This study reveals ...
Metal nanoparticle growth represents a major deactivation mechanism of supported catalysts and other...
Supported metal catalysts play a pivotal role in the production of fuels and chemicals, in the purif...
Metal nanoparticle growth represents a major deactivation mechanism of supported catalysts and other...
The development of new catalysts for energy technology and environmental remediation requires a thor...
Exciting new opportunities are emerging in the field of catalysis based on nanotechnology approaches...
Exciting new opportunities are emerging in the field of catalysis based on nanotechnology approaches...
A major cause of supported metal catalyst deactivation is particle growth by Ostwald ripening. Nicke...
A major cause of supported metal catalyst deactivation is particle growth by Ostwald ripening. Nicke...
A nanoparticle with well-defined surfaces, prepared through colloidal chemistry, enables it to be st...
The field of heterogeneous catalysis has received a remarkable amount of interest from scientific an...
Metallic nanoparticles finely dispersed over oxide supports have found use as heterogeneous catalyst...
Supported metal nanoparticles play a pivotal role in areas such as nanoelectronics, energy storage/c...
Supported metal nanoparticles play a pivotal role in areas such as nanoelectronics, energy storage/c...
Supported metal nanoparticles play a pivotal role in areas such as nanoelectronics, energy storage/c...
Particle growth is a major deactivation mechanism for supported metal catalysts. This study reveals ...
Metal nanoparticle growth represents a major deactivation mechanism of supported catalysts and other...
Supported metal catalysts play a pivotal role in the production of fuels and chemicals, in the purif...
Metal nanoparticle growth represents a major deactivation mechanism of supported catalysts and other...
The development of new catalysts for energy technology and environmental remediation requires a thor...
Exciting new opportunities are emerging in the field of catalysis based on nanotechnology approaches...
Exciting new opportunities are emerging in the field of catalysis based on nanotechnology approaches...
A major cause of supported metal catalyst deactivation is particle growth by Ostwald ripening. Nicke...
A major cause of supported metal catalyst deactivation is particle growth by Ostwald ripening. Nicke...
A nanoparticle with well-defined surfaces, prepared through colloidal chemistry, enables it to be st...
The field of heterogeneous catalysis has received a remarkable amount of interest from scientific an...
Metallic nanoparticles finely dispersed over oxide supports have found use as heterogeneous catalyst...