Fast proton conduction mechanism is of key importance for achieving high performance in fuel cell membranes, batteries, super-capacitors, and electrochromic materials. Enhanced proton diffusion is often observed in hydrated materials where it is thought to occur via the famous Grotthuss mechanism through pathways formed by structural water. Using first-principles density-functional theory calculations, we demonstrate that proton diffusion in tungsten oxide dihydrate (WO3 ·2H2O), a known good proton conductor, takes place within the layers of corner-sharing WO6 octahedra without direct involvement of structural water. The calculated proton migration barrier in WO3 ·2H2O (0.42 eV) is in good agreement with the experimental value inferred from...
We have developed for fuel cells a novel proton exchange membrane (PEM) using inorganic phosphotungs...
The electrical conductivity relaxation technique is a widely used method to determine the oxygen tra...
Some of the solid oxide materials, used in solid oxide fuel and electrolysis cells, are known to con...
Fast proton conduction mechanism is of key importance for achieving high performance in fuel cell me...
This study reveals the transport behavior of lattice water during proton (de)insertion in the struc...
Solid ceramic proton conductors are a crucial component for hydrogen-based energy devices, such as s...
The dream device for electrochemical energy storage (EES) should have both high energy density (as i...
Funding Information: Funding: School of Electronic Engineering, Nanjing Xiaozhuang University, 21117...
High ionic conductivity in low-cost semiconductor oxides is essential to develop electrochemical ene...
Certain acceptor-doped perovskite-type oxides show significant promise for deployment into a number ...
Development of new electrocatalysts for the hydrogen evolution reaction (HER) could reduce dependenc...
Unlike batteries, electrochemical supercapacitors require not only high energy density, but also ver...
We study the proton conductivity properties of MOF-801. We find that MOF-801 possesses intrinsic pro...
The preparation of proton-conducting materials that are functional and stable at intermediate temper...
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...
The electrical conductivity relaxation technique is a widely used method to determine the oxygen tra...
Some of the solid oxide materials, used in solid oxide fuel and electrolysis cells, are known to con...
Fast proton conduction mechanism is of key importance for achieving high performance in fuel cell me...
This study reveals the transport behavior of lattice water during proton (de)insertion in the struc...
Solid ceramic proton conductors are a crucial component for hydrogen-based energy devices, such as s...
The dream device for electrochemical energy storage (EES) should have both high energy density (as i...
Funding Information: Funding: School of Electronic Engineering, Nanjing Xiaozhuang University, 21117...
High ionic conductivity in low-cost semiconductor oxides is essential to develop electrochemical ene...
Certain acceptor-doped perovskite-type oxides show significant promise for deployment into a number ...
Development of new electrocatalysts for the hydrogen evolution reaction (HER) could reduce dependenc...
Unlike batteries, electrochemical supercapacitors require not only high energy density, but also ver...
We study the proton conductivity properties of MOF-801. We find that MOF-801 possesses intrinsic pro...
The preparation of proton-conducting materials that are functional and stable at intermediate temper...
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...
The electrical conductivity relaxation technique is a widely used method to determine the oxygen tra...
Some of the solid oxide materials, used in solid oxide fuel and electrolysis cells, are known to con...