Supportless Pt catalysts have several advantages over conventional carbon-supported Pt catalysts in that they are not susceptible to carbon corrosion. However, the need for high Pt loadings in membrane electrode assemblies (MEAs) to achieve state-of-the-art fuel cell performance has limited their application in proton exchange membrane fuel cells. Herein, we report a new approach to the design of a supportless Pt catalyst in terms of catalyst layer architecture, which is crucial for fuel cell performance as it affects water management and oxygen transport in the catalyst layers. Large Pt hollow spheres (PtHSs) 100 nm in size were designed and prepared using a carbon template method. Despite their large size, the unique structure of the PtHS...
The durability of electrode materials is a limiting parameter for many electrochemical energy conver...
An ultra-thin proton exchange membrane with Pt-nanosheet catalysts was designed for a self-humidifyi...
Extended network nanomaterials of platinum (Pt), silver (Ag), palladium (Pd), and gold (Au) are synt...
The development of active and durable proton exchange membrane fuel cell catalysts with high loading...
With the growing energy crisis, people urgently need green energy sources to replace fossil ones. As...
International audienceProton Exchange Membrane Fuel Cell electrocatalysts are commonly made of Pt/ca...
The durability and long-term applicability of catalysts are critical parameters for the commercializ...
A novel cathode structure (NCS) was developed, which consisted of an inner and an outer catalyst lay...
Hydrogen has the potential to be one of the solutions that can address environmental pollution and g...
Proton exchange membrane fuel cells (PEMFCs) offer an attractive zero-emission power generation tech...
Proton exchange membrane fuel cell (PEMFC) catalysts are generally made of carbon black (CB)supporte...
Nanostructured ultrathin catalyst layer based on open-walled PtCo bimetallic nanotube arrays has bee...
Fuel cells are devices that can efficiently convert fuels into electricity without the limitation of...
Platinum and Pt alloy nanoparticles supported on carbon are the state of the art electrocatalysts in...
Session - Nanomaterials for Hydrogen Production and Fuel Cells II: paper 389374With a hollow core me...
The durability of electrode materials is a limiting parameter for many electrochemical energy conver...
An ultra-thin proton exchange membrane with Pt-nanosheet catalysts was designed for a self-humidifyi...
Extended network nanomaterials of platinum (Pt), silver (Ag), palladium (Pd), and gold (Au) are synt...
The development of active and durable proton exchange membrane fuel cell catalysts with high loading...
With the growing energy crisis, people urgently need green energy sources to replace fossil ones. As...
International audienceProton Exchange Membrane Fuel Cell electrocatalysts are commonly made of Pt/ca...
The durability and long-term applicability of catalysts are critical parameters for the commercializ...
A novel cathode structure (NCS) was developed, which consisted of an inner and an outer catalyst lay...
Hydrogen has the potential to be one of the solutions that can address environmental pollution and g...
Proton exchange membrane fuel cells (PEMFCs) offer an attractive zero-emission power generation tech...
Proton exchange membrane fuel cell (PEMFC) catalysts are generally made of carbon black (CB)supporte...
Nanostructured ultrathin catalyst layer based on open-walled PtCo bimetallic nanotube arrays has bee...
Fuel cells are devices that can efficiently convert fuels into electricity without the limitation of...
Platinum and Pt alloy nanoparticles supported on carbon are the state of the art electrocatalysts in...
Session - Nanomaterials for Hydrogen Production and Fuel Cells II: paper 389374With a hollow core me...
The durability of electrode materials is a limiting parameter for many electrochemical energy conver...
An ultra-thin proton exchange membrane with Pt-nanosheet catalysts was designed for a self-humidifyi...
Extended network nanomaterials of platinum (Pt), silver (Ag), palladium (Pd), and gold (Au) are synt...