Unique and novel PdSn nanochain networks were successfully synthesized with an average diameter of 5 nm, rendering a modified Pd electronic structure with rich defects such as atomic corners, steps or ledges as catalytic active sites for great enhancement of charge transfer and electrode kinetics. The prepared PdSn nanochain networks held an electrochemically active surface area as high as 119.40 m g, and exhibited higher catalytic activity and stability toward formic acid oxidation compared with PdSn nanochain networks, PdSn nanochain networks, PdSn dendrites and Pd/C. The fundamental insight of the enhancement mechanism is discussed, and this work offers a novel, less expensive but highly active catalyst for direct formic acid fuel cells
Control over size and shape of Pd nanocrystals is critical for highly active and stable catalysts in...
Pd-based alloy catalysts have been extensively investigated as the anodic and cathodic catalysts of ...
Inspired by the unique properties of ultrathin 2D nanomaterials and excellent catalytic activities o...
PdSn/C catalysts with different atomic ratios of Pd to Sn were synthesised by a NaBH4 reduction meth...
One of the major challenges in fuel cell technologies, particularly for Proton Exchange Membrane Fue...
Although direct formic acid fuel cells and direct methanol fuel cells have attracted a lot of intere...
The deployment of direct formate fuel cells (DFFCs) relies on the development of active and stable c...
Although direct formic acid fuel cells and direct methanol fuel cells have attracted a lot of intere...
Formic acid (HCOOH), as a natural biomass, is a promising feedstock for low temperature fuel cells, ...
Herein, self-supported hierarchical AuPd alloyed interconnected nanowire networks (AuPd NCNs) were f...
Direct ethanol fuel cells (DEFCs) show a huge potential to power future electric vehicles and portab...
Palladium (Pd) nanoparticles were loaded onto multi-walled carbon nanotubes (MWCNTs) that were funct...
The conjunction of the PdSn alloy and SnO2 is of interest for improving catalytic activity in formic...
Supplementary files for article Boosting electrocatalytic oxidation of formic acid on SnO2-decorated...
<p>Pd and Pd–Au nanoparticles supported on poly(diallyldimethylammonium chloride) (PDDA) functionali...
Control over size and shape of Pd nanocrystals is critical for highly active and stable catalysts in...
Pd-based alloy catalysts have been extensively investigated as the anodic and cathodic catalysts of ...
Inspired by the unique properties of ultrathin 2D nanomaterials and excellent catalytic activities o...
PdSn/C catalysts with different atomic ratios of Pd to Sn were synthesised by a NaBH4 reduction meth...
One of the major challenges in fuel cell technologies, particularly for Proton Exchange Membrane Fue...
Although direct formic acid fuel cells and direct methanol fuel cells have attracted a lot of intere...
The deployment of direct formate fuel cells (DFFCs) relies on the development of active and stable c...
Although direct formic acid fuel cells and direct methanol fuel cells have attracted a lot of intere...
Formic acid (HCOOH), as a natural biomass, is a promising feedstock for low temperature fuel cells, ...
Herein, self-supported hierarchical AuPd alloyed interconnected nanowire networks (AuPd NCNs) were f...
Direct ethanol fuel cells (DEFCs) show a huge potential to power future electric vehicles and portab...
Palladium (Pd) nanoparticles were loaded onto multi-walled carbon nanotubes (MWCNTs) that were funct...
The conjunction of the PdSn alloy and SnO2 is of interest for improving catalytic activity in formic...
Supplementary files for article Boosting electrocatalytic oxidation of formic acid on SnO2-decorated...
<p>Pd and Pd–Au nanoparticles supported on poly(diallyldimethylammonium chloride) (PDDA) functionali...
Control over size and shape of Pd nanocrystals is critical for highly active and stable catalysts in...
Pd-based alloy catalysts have been extensively investigated as the anodic and cathodic catalysts of ...
Inspired by the unique properties of ultrathin 2D nanomaterials and excellent catalytic activities o...