Palladium (Pd) nanocrystals have been synthesized by using formic acid as the reducing agent at room temperature. When the concentration of formic acid was increased continuously, the size of Pd nanocrystals first decreased to a minimum and then increased slightly again. The products have been investigated by a series of techniques, including X-ray diffraction, high-resolution transmission electron microscopy (HRTEM), UV–vis absorption, and electrochemical measurements. The formation of Pd nanocrystals is proposed to be closely related to the dynamical imbalance of the growth and dissolution rate of Pd nanocrystals associated with the adsorption of formate ions onto the surface of the intermediates. It is found that small Pd nanocrystals sh...
Dendritic, cactoid, splintery flowers-like and spinous flowers-like micro/nano-Pd hierarchical archi...
The size-controlled synthesis of Pd/C catalyst for formic acid electrooxidation is reported in this ...
Concave-disdyakis triacontahedral palladium nanocrystals (C-DTH Pd NCs) bound with 120 {631} high-in...
A systematic study was conducted on small Pd nanocrystals (5–6 nm) to understand the effects of cata...
A systematic study was conducted on small Pd nanocrystals (5-6 nm) to understand the effects of cata...
We reported a new insight into electrochemical shape evolution of Pd nanocrystals by controlling the...
The development of facile, surfactant-free strategy for the scale-up production Of catalysts with su...
Control over size and shape of Pd nanocrystals is critical for highly active and stable catalysts in...
This report details on a newly developed method of synthesising nanoparticle electrocatalysts for fu...
Two kinds of Pd nanoparticle aggregates with different electrocatalytic activity are developed in a ...
This article presents a facile, one-pot method using the aqueous phase for the synthesis of high-qua...
Synthesis of low-dimensional metallic nanoparticles with a clean surface, high dispersibility, and e...
The preparation of highly dispersed precious metal catalysts is an important subject for fuel cell a...
A series of palladium nanoparticles with sizes ranging from 3 to 10 nm were synthesized with ethylen...
Binary Pt/Pd nanoparticles were synthesized by localized overgrowth of Pd on cubic Pt seeds for the ...
Dendritic, cactoid, splintery flowers-like and spinous flowers-like micro/nano-Pd hierarchical archi...
The size-controlled synthesis of Pd/C catalyst for formic acid electrooxidation is reported in this ...
Concave-disdyakis triacontahedral palladium nanocrystals (C-DTH Pd NCs) bound with 120 {631} high-in...
A systematic study was conducted on small Pd nanocrystals (5–6 nm) to understand the effects of cata...
A systematic study was conducted on small Pd nanocrystals (5-6 nm) to understand the effects of cata...
We reported a new insight into electrochemical shape evolution of Pd nanocrystals by controlling the...
The development of facile, surfactant-free strategy for the scale-up production Of catalysts with su...
Control over size and shape of Pd nanocrystals is critical for highly active and stable catalysts in...
This report details on a newly developed method of synthesising nanoparticle electrocatalysts for fu...
Two kinds of Pd nanoparticle aggregates with different electrocatalytic activity are developed in a ...
This article presents a facile, one-pot method using the aqueous phase for the synthesis of high-qua...
Synthesis of low-dimensional metallic nanoparticles with a clean surface, high dispersibility, and e...
The preparation of highly dispersed precious metal catalysts is an important subject for fuel cell a...
A series of palladium nanoparticles with sizes ranging from 3 to 10 nm were synthesized with ethylen...
Binary Pt/Pd nanoparticles were synthesized by localized overgrowth of Pd on cubic Pt seeds for the ...
Dendritic, cactoid, splintery flowers-like and spinous flowers-like micro/nano-Pd hierarchical archi...
The size-controlled synthesis of Pd/C catalyst for formic acid electrooxidation is reported in this ...
Concave-disdyakis triacontahedral palladium nanocrystals (C-DTH Pd NCs) bound with 120 {631} high-in...