Javascript must be enabled to continue!
Diversity of platinum-sites at platinum/fullerene interface accelerates alkaline hydrogen evolution
View through CrossRef
AbstractMembrane-based alkaline water electrolyser is promising for cost-effective green hydrogen production. One of its key technological obstacles is the development of active catalyst-materials for alkaline hydrogen-evolution-reaction (HER). Here, we show that the activity of platinum towards alkaline HER can be significantly enhanced by anchoring platinum-clusters onto two-dimensional fullerene nanosheets. The unusually large lattice distance (~0.8 nm) of the fullerene nanosheets and the ultra-small size of the platinum-clusters (~2 nm) leads to strong confinement of platinum clusters accompanied by pronounced charge redistributions at the intimate platinum/fullerene interface. As a result, the platinum-fullerene composite exhibits 12 times higher intrinsic activity for alkaline HER than the state-of-the-art platinum/carbon black catalyst. Detailed kinetic and computational investigations revealed the origin of the enhanced activity to be the diverse binding properties of the platinum-sites at the interface of platinum/fullerene, which generates highly active sites for all elementary steps in alkaline HER, particularly the sluggish Volmer step. Furthermore, encouraging energy efficiency of 74% and stability were achieved for alkaline water electrolyser assembled using platinum-fullerene composite under industrially relevant testing conditions.
Springer Science and Business Media LLC
Title: Diversity of platinum-sites at platinum/fullerene interface accelerates alkaline hydrogen evolution
Description:
AbstractMembrane-based alkaline water electrolyser is promising for cost-effective green hydrogen production.
One of its key technological obstacles is the development of active catalyst-materials for alkaline hydrogen-evolution-reaction (HER).
Here, we show that the activity of platinum towards alkaline HER can be significantly enhanced by anchoring platinum-clusters onto two-dimensional fullerene nanosheets.
The unusually large lattice distance (~0.
8 nm) of the fullerene nanosheets and the ultra-small size of the platinum-clusters (~2 nm) leads to strong confinement of platinum clusters accompanied by pronounced charge redistributions at the intimate platinum/fullerene interface.
As a result, the platinum-fullerene composite exhibits 12 times higher intrinsic activity for alkaline HER than the state-of-the-art platinum/carbon black catalyst.
Detailed kinetic and computational investigations revealed the origin of the enhanced activity to be the diverse binding properties of the platinum-sites at the interface of platinum/fullerene, which generates highly active sites for all elementary steps in alkaline HER, particularly the sluggish Volmer step.
Furthermore, encouraging energy efficiency of 74% and stability were achieved for alkaline water electrolyser assembled using platinum-fullerene composite under industrially relevant testing conditions.
Related Results
Design and Optimization of Alkaline Flooding Formulations
Design and Optimization of Alkaline Flooding Formulations
Abstract
The state-of-the-art for alkaline flooding technology is the injection of combinations of alkalis with synthetic surfactants. Surfactant-enhanced alkaline f...
Research progress of hydrogen tunneling in two-dimensional materials
Research progress of hydrogen tunneling in two-dimensional materials
One-atom-thick material such as graphene, graphene derivatives and graphene-like materials, usually has a dense network lattice structure and therefore dense distribution of electr...
The Challenges of Underground Hydrogen Gas Storage
The Challenges of Underground Hydrogen Gas Storage
ABSTRACT:
While hydrogen as a gas (H2) has been stored in salt caverns on the American Gulf Coast for the last 40 years, it’s attributes are a challenge for under...
“Nouvelle-Aquitaine” Region : The birth of natural hydrogen exploration in France ?
“Nouvelle-Aquitaine” Region : The birth of natural hydrogen exploration in France ?
As a pioneer, 45-8 ENERGY focuses on exploring and producing eco-responsible industrial gases: helium and natural hydrogen. , as well as the resources that can be associated with.H...
Review of Hydrogen Storage in Solid-State Materials
Review of Hydrogen Storage in Solid-State Materials
As a kind of clean energy, hydrogen energy has great potential to reduce environmental pollution and provide efficient energy conversion, and the key to its efficient utilization i...
Study on the mechanism of Ni and Pr doping to improve the hydrogen absorption and desorption properties of Mg95Ni2Pr3 hydrogen storage alloy
Study on the mechanism of Ni and Pr doping to improve the hydrogen absorption and desorption properties of Mg95Ni2Pr3 hydrogen storage alloy
In order to improve the slow kinetic performance and high thermodynamic stability of Mg-based hydrogen storage alloys, the Mg-Ni-Pr hydrogen storage alloy system was constructed. B...
Remote sensing exploration of Fullerene bearing Shungite in Mangampet baryte mines, India
Remote sensing exploration of Fullerene bearing Shungite in Mangampet baryte mines, India
Abstract
The fullerene (C60) is economically significant due to its significant applications in diverse areas like nanochemistry, superconductivity, materials science, etc....
Remote Sensing Exploration of Fullerene Bearing Shungite in Mangampet Baryte Mines, India
Remote Sensing Exploration of Fullerene Bearing Shungite in Mangampet Baryte Mines, India
Abstract
The fullerene (C60) is economically significant due to its significant applications in diverse areas like nanochemistry, superconductivity, materials science, etc....

