Fuel cells (FCs) are among the more efficient solutions to limit the emission of greenhouse gases. Based on the conversion of the chemical energy of a fuel (often hydrogen) and an oxidizing agent (often oxygen) into electrical energy, a typical FC produces a voltage of 0.7 V under load. The potential is highly increased by placing the cells in series to obtain a stacked cell. Among the types of FCs, the polymer electrolyte membrane FCs (PEMFCs) are developed mainly for transport applications, because of their low impact on the environment, high power density and light weight compared with other types of FCs. Phosphoric acid (H3PO4) doped polybenzimidazole (PBI) membranes are widely used as efficient electrolytes. The performance of a (high ...
Investigation of Physical and Electrochemical Properties of PILs in HT-PEFCsHui Hou, Jürgen Giffin, ...
The performance of high-temperature polymer electrolyte fuel cells is influenced by the components i...
We demonstrate that the performance of a high-temperature polymer electrolyte fuel cell with a phosp...
Abstract Fuel cells (FCs) are among the more efficient solutions to limit the emissio...
A high-temperature polymer electrolyte fuel cell (HT-PEFC) is an efficient and clean energy converti...
Phosphoric acid is used in most high temperature polymer electrolyte membrane fuel cells (HT-PEFC) e...
A polymer electrolyte fuel cell (PEFC) is an energy converter that converts the chemical energy of a...
A polymer electrolyte fuel cell (PEFC) is an energy converter that converts the chemical energy of a...
High temperature polymer electrolyte membrane (HT-PEM) fuel cells typically work at 120-200\ub0C and...
A polymer electrolyte fuel cell (PEFC) is an energy converter that converts the chemical energy of a...
Elevation of operational temperatures of polymer electrolyte membrane fuel cells (PEMFCs) has been d...
In this work a high temperature polymer electrolyte fuel cell based on a phosphoric acid doped polyb...
For high temperature polymer electrolyte fuel cells (HT-PEFCs), phosphoric acid (PA, H3PO4) is still...
For high temperature polymer electrolyte fuel cells (HT-PEFCs), phosphoric acid (PA, H3PO4) is still...
The principle of a fuel cell is the direct conversion from chemical to electrical energy. Depending ...
Investigation of Physical and Electrochemical Properties of PILs in HT-PEFCsHui Hou, Jürgen Giffin, ...
The performance of high-temperature polymer electrolyte fuel cells is influenced by the components i...
We demonstrate that the performance of a high-temperature polymer electrolyte fuel cell with a phosp...
Abstract Fuel cells (FCs) are among the more efficient solutions to limit the emissio...
A high-temperature polymer electrolyte fuel cell (HT-PEFC) is an efficient and clean energy converti...
Phosphoric acid is used in most high temperature polymer electrolyte membrane fuel cells (HT-PEFC) e...
A polymer electrolyte fuel cell (PEFC) is an energy converter that converts the chemical energy of a...
A polymer electrolyte fuel cell (PEFC) is an energy converter that converts the chemical energy of a...
High temperature polymer electrolyte membrane (HT-PEM) fuel cells typically work at 120-200\ub0C and...
A polymer electrolyte fuel cell (PEFC) is an energy converter that converts the chemical energy of a...
Elevation of operational temperatures of polymer electrolyte membrane fuel cells (PEMFCs) has been d...
In this work a high temperature polymer electrolyte fuel cell based on a phosphoric acid doped polyb...
For high temperature polymer electrolyte fuel cells (HT-PEFCs), phosphoric acid (PA, H3PO4) is still...
For high temperature polymer electrolyte fuel cells (HT-PEFCs), phosphoric acid (PA, H3PO4) is still...
The principle of a fuel cell is the direct conversion from chemical to electrical energy. Depending ...
Investigation of Physical and Electrochemical Properties of PILs in HT-PEFCsHui Hou, Jürgen Giffin, ...
The performance of high-temperature polymer electrolyte fuel cells is influenced by the components i...
We demonstrate that the performance of a high-temperature polymer electrolyte fuel cell with a phosp...