Carbon nanofiber (CNF) supported Pd nanoparticles are synthesized with sodium citrate and sodium borohydride served as stabilizing agent and reducing agent, respectively. The size and distribution of the supported Pd nanoparticles are controlled by adjusting the pH value of the synthesis solution. Analyses of the obtained Pd/CNF catalysts indicate that the supported Pd nanoparticles become more uniform in size and the average particle size is decreased from 5.85 to 3.62 nm with pH value of the synthesis solution increasing from 3.2 to 6.0. However, the further increasing of the pH value to 6.5 leads to an increased particle size and the formation of PdO phase in the synthesized Pd/CNF catalyst. The Pd/CNF catalyst synthesized at the pH valu...
The preparation of highly dispersed precious metal catalysts is an important subject for fuel cell a...
This article presents a facile, one-pot method using the aqueous phase for the synthesis of high-qua...
Control over size and shape of Pd nanocrystals is critical for highly active and stable catalysts in...
Carbon nanofiber (CNF) supported PdAu nanoparticles are synthesized with sodium citrate as the stabi...
The controllable synthesis of nanosized carbon-supported Pd catalysts through a surface replacement ...
The development of facile, surfactant-free strategy for the scale-up production Of catalysts with su...
In this study, we present a simple process to obtain highly dispersed palladium nanoparticles on Vul...
Carbon supported nanoparticle catalysts of PdxPt1 12x (0 65x 651) were synthesized using a modified ...
The size-controlled synthesis of Pd/C catalyst for formic acid electrooxidation is reported in this ...
This report details on a newly developed method of synthesising nanoparticle electrocatalysts for fu...
This report details on a newly developed method of synthesising nanoparticle electrocatalysts for fu...
The electrochemical formation of a palladium nanoparticle catalyst composite material has been inves...
The electrochemical formation of a palladium nanoparticle catalyst composite material has been inves...
none12siThe development of safe and efficient H2 generation/storage materials toward a fuel-cell-bas...
The use of shape-controlled nanomaterials represents an elegant way to improve the performance of ma...
The preparation of highly dispersed precious metal catalysts is an important subject for fuel cell a...
This article presents a facile, one-pot method using the aqueous phase for the synthesis of high-qua...
Control over size and shape of Pd nanocrystals is critical for highly active and stable catalysts in...
Carbon nanofiber (CNF) supported PdAu nanoparticles are synthesized with sodium citrate as the stabi...
The controllable synthesis of nanosized carbon-supported Pd catalysts through a surface replacement ...
The development of facile, surfactant-free strategy for the scale-up production Of catalysts with su...
In this study, we present a simple process to obtain highly dispersed palladium nanoparticles on Vul...
Carbon supported nanoparticle catalysts of PdxPt1 12x (0 65x 651) were synthesized using a modified ...
The size-controlled synthesis of Pd/C catalyst for formic acid electrooxidation is reported in this ...
This report details on a newly developed method of synthesising nanoparticle electrocatalysts for fu...
This report details on a newly developed method of synthesising nanoparticle electrocatalysts for fu...
The electrochemical formation of a palladium nanoparticle catalyst composite material has been inves...
The electrochemical formation of a palladium nanoparticle catalyst composite material has been inves...
none12siThe development of safe and efficient H2 generation/storage materials toward a fuel-cell-bas...
The use of shape-controlled nanomaterials represents an elegant way to improve the performance of ma...
The preparation of highly dispersed precious metal catalysts is an important subject for fuel cell a...
This article presents a facile, one-pot method using the aqueous phase for the synthesis of high-qua...
Control over size and shape of Pd nanocrystals is critical for highly active and stable catalysts in...