Insufficient catalyst utilization, limited mass transport, and high ohmic resistance of the conventional membrane electrode assembly (MEA) lead to significant performance losses of proton exchange membrane water electrolysis (PEMWE). Herein we propose a novel ordered MEA based on anode with a 3D membrane/catalytic layer (CL) interface and gradient tapered arrays by the nanoimprinting method, confirmed by energy dispersive spectroscopy. Benefiting from the maximized triple-phase interface, rapid mass transport, and gradient CL by overall design, such an ordered structure with Ir loading of 0.2 mg cm–2 not only greatly increases the electrochemical active area by 4.2 times but also decreases the overpotentials of both mass transport and ohmic...
Membrane electrode assemblies (MEA) prepared by direct spraying catalyst ink on water swollen membra...
Membrane electrode assemblies (MEA) prepared by direct spraying catalyst ink on water swollen membra...
One major challenge associated with proton exchange membrane fuel cells is to preserve higher proton...
We present a novel membrane electrode assembly (MEA) fabrication method for proton exchange membrane...
Proton-exchange membrane water electrolysis (PEMWE) produces hydrogen with high efficiency and purit...
Proton-exchange membrane water electrolysis (PEMWE) produces hydrogen with high efficiency and purit...
Proton-exchange membrane water electrolysis (PEMWE) produces hydrogen with high efficiency and purit...
Lack of commercial electrocatalysts and membrane electrode assemblies (MEA) which are efficient, dur...
So far the superior cell polarization behavior of membrane electrode assemblies (MEAs) using catalys...
In this study we investigate the potential of porous transport electrode (PTE) based membrane electr...
This work shows how to manufacture completely coated membrane electrode assemblies (CC-MEAs) for PEM...
The key component of a solid polymer electrolyte water electrolyser is the membrane electrode assemb...
In this study we investigate the potential of porous transport electrode (PTE) based membrane electr...
The membrane electrolyte assembly (MEA) designed in this study utilizes a double-layered cathode: an...
A new ultrathin anion exchange membrane (AEM) is proposed for low cost AEM electrolysis. The advant...
Membrane electrode assemblies (MEA) prepared by direct spraying catalyst ink on water swollen membra...
Membrane electrode assemblies (MEA) prepared by direct spraying catalyst ink on water swollen membra...
One major challenge associated with proton exchange membrane fuel cells is to preserve higher proton...
We present a novel membrane electrode assembly (MEA) fabrication method for proton exchange membrane...
Proton-exchange membrane water electrolysis (PEMWE) produces hydrogen with high efficiency and purit...
Proton-exchange membrane water electrolysis (PEMWE) produces hydrogen with high efficiency and purit...
Proton-exchange membrane water electrolysis (PEMWE) produces hydrogen with high efficiency and purit...
Lack of commercial electrocatalysts and membrane electrode assemblies (MEA) which are efficient, dur...
So far the superior cell polarization behavior of membrane electrode assemblies (MEAs) using catalys...
In this study we investigate the potential of porous transport electrode (PTE) based membrane electr...
This work shows how to manufacture completely coated membrane electrode assemblies (CC-MEAs) for PEM...
The key component of a solid polymer electrolyte water electrolyser is the membrane electrode assemb...
In this study we investigate the potential of porous transport electrode (PTE) based membrane electr...
The membrane electrolyte assembly (MEA) designed in this study utilizes a double-layered cathode: an...
A new ultrathin anion exchange membrane (AEM) is proposed for low cost AEM electrolysis. The advant...
Membrane electrode assemblies (MEA) prepared by direct spraying catalyst ink on water swollen membra...
Membrane electrode assemblies (MEA) prepared by direct spraying catalyst ink on water swollen membra...
One major challenge associated with proton exchange membrane fuel cells is to preserve higher proton...