We show that catalytic activity of bimetallic Rh0.5Pt0.5 nanoparticle arrays under CO oxidation can be tuned by varying the size of nanoparticles. The tuning of size of RhPt nanoparticles was achieved by changing the concentration of rhodium and platinum precursors in one-step polyol synthesis. We obtained two dimensional Rh0.5Pt0.5 bimetallic nanoparticle arrays in size between 5.7 nm and 11 nm. CO oxidation was carried out on these two-dimensional nanoparticle arrays, revealing higher activity on the smaller nanoparticles compared to the bigger nanoparticles. X-ray photoelectron spectroscopy (XPS) results indicate the preferential surface segregation of Rh compared to Pt on the smaller nanoparticles, which is consistent with our thermodyn...
Heterogeneous catalysts that contain bimetallic nanoparticles may undergo segregation of the metals,...
We report the catalytic activity of colloid platinum nanoparticles synthesized with different organi...
We report the catalytic activity of colloid platinum nanoparticles synthesized with different organi...
We show that catalytic activity of bimetallic Rh0.5Pt0.5 nanoparticle arrays under CO oxidation can ...
Recent breakthroughs in synthesis in nanoscience have achieved control of size and composition of na...
A particle size dependence for CO oxidation over rhodium nanoparticles of 1.9-11.3 nm has been inves...
A particle size dependence for CO oxidation over rhodium nanoparticles of 1.9-11.3 nm has been inves...
Surface oxide layers formed on transition metal catalysts are well known as one of the controlling f...
Abstract: CO oxidation, as one of the simplest catalytic reactions, has been widely studied in heter...
A particle size dependence for CO oxidation over rhodium nanoparticles of 1.9-11.3 nm has been inves...
Surface oxide layers formed on transition metal catalysts are well known as one of the controlling f...
Recent studies suggest that surface oxides on transition metal nanoparticles play an important role ...
Recent studies suggest that surface oxides on transition metal nanoparticles play an important role ...
Carbon monoxide oxidation over ruthenium catalysts has shown an unusual catalytic behavior Here we r...
We report the catalytic activity of colloid platinum nanoparticles synthesized with different organi...
Heterogeneous catalysts that contain bimetallic nanoparticles may undergo segregation of the metals,...
We report the catalytic activity of colloid platinum nanoparticles synthesized with different organi...
We report the catalytic activity of colloid platinum nanoparticles synthesized with different organi...
We show that catalytic activity of bimetallic Rh0.5Pt0.5 nanoparticle arrays under CO oxidation can ...
Recent breakthroughs in synthesis in nanoscience have achieved control of size and composition of na...
A particle size dependence for CO oxidation over rhodium nanoparticles of 1.9-11.3 nm has been inves...
A particle size dependence for CO oxidation over rhodium nanoparticles of 1.9-11.3 nm has been inves...
Surface oxide layers formed on transition metal catalysts are well known as one of the controlling f...
Abstract: CO oxidation, as one of the simplest catalytic reactions, has been widely studied in heter...
A particle size dependence for CO oxidation over rhodium nanoparticles of 1.9-11.3 nm has been inves...
Surface oxide layers formed on transition metal catalysts are well known as one of the controlling f...
Recent studies suggest that surface oxides on transition metal nanoparticles play an important role ...
Recent studies suggest that surface oxides on transition metal nanoparticles play an important role ...
Carbon monoxide oxidation over ruthenium catalysts has shown an unusual catalytic behavior Here we r...
We report the catalytic activity of colloid platinum nanoparticles synthesized with different organi...
Heterogeneous catalysts that contain bimetallic nanoparticles may undergo segregation of the metals,...
We report the catalytic activity of colloid platinum nanoparticles synthesized with different organi...
We report the catalytic activity of colloid platinum nanoparticles synthesized with different organi...