Proton exchange membranes (PEMs) have various applications, such as in electrolysis technology for hydrogen generation, vanadium flow batteries for energy storage, and fuel cells for energy conversion. To increase PEM performance and expand the range of PEM applications, the underlying transport mechanisms of PEMs need to be understood. Mesoporous silica thin films are versatile model materials for proton transport investigation and are prepared with a pore size of ≈12 nm and film thickness of ≈565 nm by evaporation‐induced self‐assembly, providing an ordered, mesoporous, rigid matrix that allows us to deduce the structure‐property relationship with respect to proton conductivity. Different amounts of sulfonic acid‐bearing groups are introd...
We provide a phenomenological description of proton conductance in polymer electrolyte membranes, ba...
Proton transport in proton exchange membranes (PEMs) depends on interaction between water and acid g...
The proton conductivity mechanism in per-fluorinated sulfonic acid/PTFE copolymer Fumapem® membranes...
Proton exchange membranes (PEMs) have various applications, such as in electrolysis technology for h...
We have developed for fuel cells a novel proton exchange membrane (PEM) using inorganic phosphotungs...
We have developed for fuel cells a novel proton exchange membrane (PEM) using inorganic phosphotungs...
We have developed for fuel cells a novel proton exchange membrane (PEM) using inorganic phosphotungs...
This work investigated several proton exchange membranes (PEMs): perfluorosulfonic acid-based polyme...
We investigated proton conductivity and the permeability of monovalent cations across sulfonated mes...
The chemical and structural features of proton exchange membranes (PEMs) are related to their fuel c...
Sulfonated SBA-15 mesoporous silica (SM-SiO 2)-incorporated sulfonated poly(phenylsulfone) (SPPSU) c...
For understanding the relationship between the proton conductivity, P, and structures of polymer ele...
Inorganic proton conductors are receiving much attention because of their inherent mechanical and th...
While we don’t actually eat electricity, in a weird kind of way we do. Our current means of producin...
The enhancement of proton transport in polymer electrolyte membranes is an important issue for the d...
We provide a phenomenological description of proton conductance in polymer electrolyte membranes, ba...
Proton transport in proton exchange membranes (PEMs) depends on interaction between water and acid g...
The proton conductivity mechanism in per-fluorinated sulfonic acid/PTFE copolymer Fumapem® membranes...
Proton exchange membranes (PEMs) have various applications, such as in electrolysis technology for h...
We have developed for fuel cells a novel proton exchange membrane (PEM) using inorganic phosphotungs...
We have developed for fuel cells a novel proton exchange membrane (PEM) using inorganic phosphotungs...
We have developed for fuel cells a novel proton exchange membrane (PEM) using inorganic phosphotungs...
This work investigated several proton exchange membranes (PEMs): perfluorosulfonic acid-based polyme...
We investigated proton conductivity and the permeability of monovalent cations across sulfonated mes...
The chemical and structural features of proton exchange membranes (PEMs) are related to their fuel c...
Sulfonated SBA-15 mesoporous silica (SM-SiO 2)-incorporated sulfonated poly(phenylsulfone) (SPPSU) c...
For understanding the relationship between the proton conductivity, P, and structures of polymer ele...
Inorganic proton conductors are receiving much attention because of their inherent mechanical and th...
While we don’t actually eat electricity, in a weird kind of way we do. Our current means of producin...
The enhancement of proton transport in polymer electrolyte membranes is an important issue for the d...
We provide a phenomenological description of proton conductance in polymer electrolyte membranes, ba...
Proton transport in proton exchange membranes (PEMs) depends on interaction between water and acid g...
The proton conductivity mechanism in per-fluorinated sulfonic acid/PTFE copolymer Fumapem® membranes...