This paper describes the effects of doped metals on hydrogen evolution reaction (HER) electrocatalyzed by atomically controlled MAu24 and M2Au36 nanoclusters, where M = Pt and Pd. HER performances, such as onset potential (Eonset), catalytic current density, and turnover frequency (TOF), are comparatively examined with respect to the doped metals. Doping Pt or Pd into gold nanoclusters not only changes the electrochemical redox potentials of nanoclusters but also considerably improves the HER activities. Eonset is found to be controlled by the nanocluster’s reduction potential matching the reduction potential of H+. The higher catalytic current and TOF are observed with the doped nanoclusters in the order of PtAu24 > PdAu24 > Au25. The same...
For small Pt nanoparticles (NPs), catalytic activity is, as observed, adversely affected by size in ...
The ligand effects of atomically precise metal nanoclusters on electrocatalysis kinetics have been r...
In the present contribution we have focused on the electrochemical adsorption of a proton from the s...
The hydrogen evolution reaction (HER) is a critical reaction in addressing climate change; however, ...
Hydrogen–metal interaction is the foundation of many technologies and processes, but how hydrogen be...
Metal nanoclusters (e.g. Pt, Pd, and Au) have been those of the most valuable catalysts that have be...
The development of affordable and earth-abundant electrocatalysts for the hydrogen evolution reactio...
Changes in the size distribution and composition of bimetallic Pd-Au nanoclusters have been observed...
Noble metal nanoparticles have been studied extensively as heterogeneous catalysts for electrocataly...
cited By 29A theoretical study of hydrogen deposition and insertion in bimetallic Pd-Pt nanoalloys h...
A novel strategy to direct the oxygen reduction reaction to preferentially produce H2O2 is formulate...
Hydrogen has been considered as a clean renewable energy system. Pt has been the universal choice fo...
Hydrogen-catalyst interaction is the foundation of many technologies and processes. Herein we employ...
We report the catalytic activity of a single, isolated Pt deposit on Bi and Pb supports to probe the...
Pd or Pt alloyed with a secondary metal are the typical catalysts at the anode for the direct oxidat...
For small Pt nanoparticles (NPs), catalytic activity is, as observed, adversely affected by size in ...
The ligand effects of atomically precise metal nanoclusters on electrocatalysis kinetics have been r...
In the present contribution we have focused on the electrochemical adsorption of a proton from the s...
The hydrogen evolution reaction (HER) is a critical reaction in addressing climate change; however, ...
Hydrogen–metal interaction is the foundation of many technologies and processes, but how hydrogen be...
Metal nanoclusters (e.g. Pt, Pd, and Au) have been those of the most valuable catalysts that have be...
The development of affordable and earth-abundant electrocatalysts for the hydrogen evolution reactio...
Changes in the size distribution and composition of bimetallic Pd-Au nanoclusters have been observed...
Noble metal nanoparticles have been studied extensively as heterogeneous catalysts for electrocataly...
cited By 29A theoretical study of hydrogen deposition and insertion in bimetallic Pd-Pt nanoalloys h...
A novel strategy to direct the oxygen reduction reaction to preferentially produce H2O2 is formulate...
Hydrogen has been considered as a clean renewable energy system. Pt has been the universal choice fo...
Hydrogen-catalyst interaction is the foundation of many technologies and processes. Herein we employ...
We report the catalytic activity of a single, isolated Pt deposit on Bi and Pb supports to probe the...
Pd or Pt alloyed with a secondary metal are the typical catalysts at the anode for the direct oxidat...
For small Pt nanoparticles (NPs), catalytic activity is, as observed, adversely affected by size in ...
The ligand effects of atomically precise metal nanoclusters on electrocatalysis kinetics have been r...
In the present contribution we have focused on the electrochemical adsorption of a proton from the s...