A particle size dependence for CO oxidation over rhodium nanoparticles of 1.9-11.3 nm has been investigated and determined to be modified by the existence of the capping agent poly(vinylpyrrolidone) (PVP). The particles were prepared using a polyol reduction procedure with PVP as the capping agent. The Rh nanoparticles were subsequently supported on SBA-15 during hydrothermal synthesis to produce Rh/SBA-15 supported catalysts for size-dependent catalytic studies. CO oxidation by O{sub 2} at 40 Torr CO and 100 Torr O{sub 2} was investigated over two series of Rh/SBA-15 catalysts: as-synthesized Rh/SBA-15 covering the full range of Rh sizes and the same set of catalysts after high temperature calcination and reduction. The turnover frequency ...
Bigger is not always better: Rhodium metal particles smaller than 2.5 nm are oxidized and stabilized...
Bigger is not always better: Rhodium metal particles smaller than 2.5 nm are oxidized and stabilized...
Bigger is not always better: Rhodium metal particles smaller than 2.5 nm are oxidized and stabilized...
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...
We show that catalytic activity of bimetallic Rh0.5Pt0.5 nanoparticle arrays under CO oxidation can ...
We show that catalytic activity of bimetallic Rh0.5Pt0.5 nanoparticle arrays under CO oxidation can ...
Surface oxide layers formed on transition metal catalysts are well known as one of the controlling f...
Surface oxide layers formed on transition metal catalysts are well known as one of the controlling f...
By using wet-chemical methods, cubic, tetrahedral, and randomly shaped Rh nanoparticles (NPs) with d...
By using wet-chemical methods, cubic, tetrahedral, and randomly shaped Rh nanoparticles (NPs) with d...
By using wet-chemical methods, cubic, tetrahedral, and randomly shaped Rh nanoparticles (NPs) with d...
By using wet-chemical methods, cubic, tetrahedral, and randomly shaped Rh nanoparticles (NPs) with d...
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 ...
Bigger is not always better: Rhodium metal particles smaller than 2.5 nm are oxidized and stabilized...
Bigger is not always better: Rhodium metal particles smaller than 2.5 nm are oxidized and stabilized...
Bigger is not always better: Rhodium metal particles smaller than 2.5 nm are oxidized and stabilized...
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...
We show that catalytic activity of bimetallic Rh0.5Pt0.5 nanoparticle arrays under CO oxidation can ...
We show that catalytic activity of bimetallic Rh0.5Pt0.5 nanoparticle arrays under CO oxidation can ...
Surface oxide layers formed on transition metal catalysts are well known as one of the controlling f...
Surface oxide layers formed on transition metal catalysts are well known as one of the controlling f...
By using wet-chemical methods, cubic, tetrahedral, and randomly shaped Rh nanoparticles (NPs) with d...
By using wet-chemical methods, cubic, tetrahedral, and randomly shaped Rh nanoparticles (NPs) with d...
By using wet-chemical methods, cubic, tetrahedral, and randomly shaped Rh nanoparticles (NPs) with d...
By using wet-chemical methods, cubic, tetrahedral, and randomly shaped Rh nanoparticles (NPs) with d...
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 ...
Bigger is not always better: Rhodium metal particles smaller than 2.5 nm are oxidized and stabilized...
Bigger is not always better: Rhodium metal particles smaller than 2.5 nm are oxidized and stabilized...
Bigger is not always better: Rhodium metal particles smaller than 2.5 nm are oxidized and stabilized...