Metal nanoclusters (e.g. Pt, Pd, and Au) have been those of the most valuable catalysts that have been used in many catalytic fields of hydrogenation, fuel-cell technologies, and water splitting photo-catalytically, etc. In this mini review, the previous works from our group about the optical, electrical and catalytic properties of metal nanoclusters, such as Pt13, Pd13, and Au13, have been reviewed. Ab initio molecular dynamics simulation (AIMD) at a DFT (Density Functional Theory) level has been applied to simulate the catalytic properties. The results show that Pt13 and Pd13 nanocluster present interesting hydrogen reduction and molecular H2 desorption on the surface of the metal nanoclusters. An elementary hydrogen evolution mechanism o...
Hydrogen-catalyst interaction is the foundation of many technologies and processes. Herein we employ...
International audienceA crucial step in the preparation of supported metal catalysts is related to t...
International audienceSupported platinum-based sub-nanometric particles play a central role in many ...
Metal nanoclusters (e.g. Pt, Pd, and Au) have been those of the most valuable catalysts that have be...
The hydrogen evolution reaction (HER) is a critical reaction in addressing climate change; however, ...
This paper describes the effects of doped metals on hydrogen evolution reaction (HER) electrocatalyz...
<div><p>Catalytic activities of neutral and charged palladium (Pd) nanoparticles are compared for hy...
In this work, first-principles calculations by using density functional theory at the GFN-xTB level,...
Organometallic nanoparticles composed by metal cores with sizes under two nanometers covered with or...
Understanding the molecular interaction behavior of transition metal nanoclusters lies at the heart ...
The development of affordable and earth-abundant electrocatalysts for the hydrogen evolution reactio...
Time-dependent density functional theory calculations have been used to investigate the electronic a...
We use an informational statistical mechanics approach to study the catalytic thermodynamics of plat...
We have performed a theoretical study of pure metal nanoparticles (Pd/Pt/Au) and their interaction w...
Tuning the properties of palladium nanoparticles using different protecting ligand shells is an impo...
Hydrogen-catalyst interaction is the foundation of many technologies and processes. Herein we employ...
International audienceA crucial step in the preparation of supported metal catalysts is related to t...
International audienceSupported platinum-based sub-nanometric particles play a central role in many ...
Metal nanoclusters (e.g. Pt, Pd, and Au) have been those of the most valuable catalysts that have be...
The hydrogen evolution reaction (HER) is a critical reaction in addressing climate change; however, ...
This paper describes the effects of doped metals on hydrogen evolution reaction (HER) electrocatalyz...
<div><p>Catalytic activities of neutral and charged palladium (Pd) nanoparticles are compared for hy...
In this work, first-principles calculations by using density functional theory at the GFN-xTB level,...
Organometallic nanoparticles composed by metal cores with sizes under two nanometers covered with or...
Understanding the molecular interaction behavior of transition metal nanoclusters lies at the heart ...
The development of affordable and earth-abundant electrocatalysts for the hydrogen evolution reactio...
Time-dependent density functional theory calculations have been used to investigate the electronic a...
We use an informational statistical mechanics approach to study the catalytic thermodynamics of plat...
We have performed a theoretical study of pure metal nanoparticles (Pd/Pt/Au) and their interaction w...
Tuning the properties of palladium nanoparticles using different protecting ligand shells is an impo...
Hydrogen-catalyst interaction is the foundation of many technologies and processes. Herein we employ...
International audienceA crucial step in the preparation of supported metal catalysts is related to t...
International audienceSupported platinum-based sub-nanometric particles play a central role in many ...