Electrocatalytic oxygen reduction reaction (ORR), oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) have attracted widespread attention because of their important role in the application of various energy storage and conversion devices, such as fuel cells, metal-air batteries and water splitting devices. However, the sluggish kinetics of the HER/OER/ORR and their dependency on expensive noble metal catalysts (e.g., Pt) obstruct their large-scale application. Hence, the development of efficient and robust bifunctional or trifunctional electrocatalysts in nanodimension for both oxygen reduction/evolution and hydrogen evolution reactions is highly desired and challenging for their commercialization in renewable energy techn...
Increasing energy demands have stimulated intense research activities on reversible electrochemical ...
Multifunctional catalysts that integrate high efficiency hydrogen evolution reaction (HER), oxygen e...
The general trends in the construction of highly active electrode devices are focused on the science...
A fundamental change has been achieved in understanding surface electrochemistry due to the profound...
A fundamental change has been achieved in understanding surface electrochemistry due to the profound...
Development of highly active, durable, and low-cost electrocatalysts for energy conversion devices, ...
Research on alternative energy harvesting technologies, conversion and storage systems with high eff...
The development of highly active and durable electrocatalysts has been of pivotal importance in rene...
Regenerative anion exchange membranes fuel cells (AEMFCs) have been widely considered as energy conv...
The research on renewable energy is actively looking into electrocatalysts based on transition metal...
The research on renewable energy is actively looking into electrocatalysts based on transition metal...
The key renewable-energy technologies, such as fuel cells, metal-air batteries, and water electrolys...
The use of hydrogen gas produced by the electrolysis of water is the basis of a long term energy con...
Electrochemical energy storage and conversion devices play a key role in the development of clean, s...
Abstract Developments of high efficient materials for electrocatalyst are significant topics of nume...
Increasing energy demands have stimulated intense research activities on reversible electrochemical ...
Multifunctional catalysts that integrate high efficiency hydrogen evolution reaction (HER), oxygen e...
The general trends in the construction of highly active electrode devices are focused on the science...
A fundamental change has been achieved in understanding surface electrochemistry due to the profound...
A fundamental change has been achieved in understanding surface electrochemistry due to the profound...
Development of highly active, durable, and low-cost electrocatalysts for energy conversion devices, ...
Research on alternative energy harvesting technologies, conversion and storage systems with high eff...
The development of highly active and durable electrocatalysts has been of pivotal importance in rene...
Regenerative anion exchange membranes fuel cells (AEMFCs) have been widely considered as energy conv...
The research on renewable energy is actively looking into electrocatalysts based on transition metal...
The research on renewable energy is actively looking into electrocatalysts based on transition metal...
The key renewable-energy technologies, such as fuel cells, metal-air batteries, and water electrolys...
The use of hydrogen gas produced by the electrolysis of water is the basis of a long term energy con...
Electrochemical energy storage and conversion devices play a key role in the development of clean, s...
Abstract Developments of high efficient materials for electrocatalyst are significant topics of nume...
Increasing energy demands have stimulated intense research activities on reversible electrochemical ...
Multifunctional catalysts that integrate high efficiency hydrogen evolution reaction (HER), oxygen e...
The general trends in the construction of highly active electrode devices are focused on the science...