Membrane morphology plays a great role in determining the performance of polymer electrolyte membranes (PEMs), especially for direct methanol fuel cell (DMFC) applications. Membrane morphology can be divided into two types, which are dense and porous structures. Membrane fabrication methods have different configurations, including dense, thin and thick, layered, sandwiched and pore-filling membranes. All these types of membranes possess the same densely packed structural morphology, which limits the transportation of protons, even at a low methanol crossover. This paper summarizes our work on the development of PEMs with various structures and architecture that can affect the membrane’s performance, in terms of microstructures and morpholog...
© 2015 Hydrogen Energy Publications, LLC.A parametric study is conducted using a previously describe...
PhD ThesisEnvironmentally friendly polymer electrolyte membrane fuel cells (PEMFCs) have the potent...
Fuel cells convert chemical energy in electrical energy and heat by consuming typically hydrogen and...
Direct methanol fuel cell (DMFC) system has tremendous potential to be developed as energy converter...
Development of new membrane materials for direct methanol fuel cells Direct methanol fuel cells (DMF...
Philosophiae Doctor - PhDA fuel cell is an energy device that converts chemical energy to electrical...
This review describes the polymer electrolyte membranes (PEM) that are both under development and co...
Thesis (Ph. D.)--University of Rochester. Dept. of Chemical Engineering, 2011.Fuel cells, with the a...
Polymer electrolyte membrane fuel cells (PEMFCs), including hydrogen fuel cells (PEMFCs) and direct ...
In order to study the relationship between the properties of proton electrolyte membranes (PEMs), ob...
This paper examines polymer film morphology and several important properties of polyethylene-graft-s...
Direct methanol fuel cell (DMFC) are a promising power source for micro and portable applications du...
ABSTRACT A fuel cell is an energy conversion device that converts the chemical energy of fuel into e...
Presented on February 4, 2009, from 4-5 pm in room G011 of the Molecular Science and Engineering Bu...
DMagister Scientiae - MScThe proton exchange membrane is one key component of direct methanol fuel c...
© 2015 Hydrogen Energy Publications, LLC.A parametric study is conducted using a previously describe...
PhD ThesisEnvironmentally friendly polymer electrolyte membrane fuel cells (PEMFCs) have the potent...
Fuel cells convert chemical energy in electrical energy and heat by consuming typically hydrogen and...
Direct methanol fuel cell (DMFC) system has tremendous potential to be developed as energy converter...
Development of new membrane materials for direct methanol fuel cells Direct methanol fuel cells (DMF...
Philosophiae Doctor - PhDA fuel cell is an energy device that converts chemical energy to electrical...
This review describes the polymer electrolyte membranes (PEM) that are both under development and co...
Thesis (Ph. D.)--University of Rochester. Dept. of Chemical Engineering, 2011.Fuel cells, with the a...
Polymer electrolyte membrane fuel cells (PEMFCs), including hydrogen fuel cells (PEMFCs) and direct ...
In order to study the relationship between the properties of proton electrolyte membranes (PEMs), ob...
This paper examines polymer film morphology and several important properties of polyethylene-graft-s...
Direct methanol fuel cell (DMFC) are a promising power source for micro and portable applications du...
ABSTRACT A fuel cell is an energy conversion device that converts the chemical energy of fuel into e...
Presented on February 4, 2009, from 4-5 pm in room G011 of the Molecular Science and Engineering Bu...
DMagister Scientiae - MScThe proton exchange membrane is one key component of direct methanol fuel c...
© 2015 Hydrogen Energy Publications, LLC.A parametric study is conducted using a previously describe...
PhD ThesisEnvironmentally friendly polymer electrolyte membrane fuel cells (PEMFCs) have the potent...
Fuel cells convert chemical energy in electrical energy and heat by consuming typically hydrogen and...