Thin porous alumina sheets have been synthesized using a lysine-assisted hydrothermal approach resulting in an extraordinary catalyst support that can stabilize Au nanoparticles at annealing temperatures up to 900 degrees C. Remarkably, the unique architecture of such an alumina with thin sheets (average thickness similar to 15 nm and length 680 nm) and rough surface is beneficial to prevent gold nanoparticles from sintering. HRTEM observations clearly showed that the epitaxial growth between Au nanoparticles and alumina support was due to strong interfacial interactions, further explaining the high sinter-stability of the obtained Au/Al2O3 catalyst. Consequently, despite calcination at 700 degrees C, the catalyst maintains its gold nanopar...
New materials are sought for applications in catalysis, sensing, optics, electronics and other emerg...
Several reviews appeared in the last years to emphasize the unique properties showed by gold metal, ...
We fabricated films of Au onto single crystal alumina (Al2O3(0001)) and nanostructured the surface u...
One of the prevalent difficulties in using supported gold (Au) cluster or nanoparticle materials for...
Monodispersed nano-Au/gamma-Al2O3 catalysts for low-temperature oxidation of CO have been prepared v...
Au/CeO<sub>2</sub> catalysts are highly active for low-temperature CO oxidation and water–gas shift ...
In this study, we report on the influence of support and gas atmosphere on the thermal stability of ...
Our strategy to inhibit Au(0) growth with temperature involves the preparation of ultrafine Au clust...
Supported gold (Au) nanocatalysts hold great promise for heterogeneous catalysis; however, their pra...
Recently supported gold catalysts have been reported to exhibit surprisingly high activities in low-...
New materials are sought for applications in catalysis, sensing, optics, electronics and other emerg...
The poor thermodynamic stability of gold nanoparticles (NPs) makes it very challenging to stabilize ...
The poor thermodynamic stability of gold nanoparticles (NPs) makes it very challenging to stabilize ...
Nanoporous “Raney gold” sponge was prepared by de-alloying an Au-Al precursor alloy. Catalytic tests...
Supported noble metal catalysts are widely used in environmental catalysis. In such kind of catalyst...
New materials are sought for applications in catalysis, sensing, optics, electronics and other emerg...
Several reviews appeared in the last years to emphasize the unique properties showed by gold metal, ...
We fabricated films of Au onto single crystal alumina (Al2O3(0001)) and nanostructured the surface u...
One of the prevalent difficulties in using supported gold (Au) cluster or nanoparticle materials for...
Monodispersed nano-Au/gamma-Al2O3 catalysts for low-temperature oxidation of CO have been prepared v...
Au/CeO<sub>2</sub> catalysts are highly active for low-temperature CO oxidation and water–gas shift ...
In this study, we report on the influence of support and gas atmosphere on the thermal stability of ...
Our strategy to inhibit Au(0) growth with temperature involves the preparation of ultrafine Au clust...
Supported gold (Au) nanocatalysts hold great promise for heterogeneous catalysis; however, their pra...
Recently supported gold catalysts have been reported to exhibit surprisingly high activities in low-...
New materials are sought for applications in catalysis, sensing, optics, electronics and other emerg...
The poor thermodynamic stability of gold nanoparticles (NPs) makes it very challenging to stabilize ...
The poor thermodynamic stability of gold nanoparticles (NPs) makes it very challenging to stabilize ...
Nanoporous “Raney gold” sponge was prepared by de-alloying an Au-Al precursor alloy. Catalytic tests...
Supported noble metal catalysts are widely used in environmental catalysis. In such kind of catalyst...
New materials are sought for applications in catalysis, sensing, optics, electronics and other emerg...
Several reviews appeared in the last years to emphasize the unique properties showed by gold metal, ...
We fabricated films of Au onto single crystal alumina (Al2O3(0001)) and nanostructured the surface u...