Electrochemical energy devices, such as fuel cells and metal-air batteries, convert chemical energy directly into electricity without adverse environmental impact. Attractive alternatives to expensive noble metals used in these renewable energy technologies are earth-abundant transition metal oxides. However, they are often limited by catalytic and conductive capabilities. Here reported is a spinel oxide, Co2 VO4 , by marrying metallic vanadium atomic chains with electroactive cobalt cations for superior oxygen reduction reaction (ORR)-a key process for fuel cells, metal-air batteries, etc. The experimental and simulated electron energy-loss spectroscopy analyses reveal that Co2+ cations at the octahedral sites take the low spin state with ...
The development of efficient ORR and OER oxide electrocatalysts has become the major challenge in su...
Oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) are important for developing ene...
Clarifying and controlling the surface catalytic active sites is at the heart of developing low-cost...
Cation substitution in transition metal oxides is an important approach to improve electrocatalysts ...
Cation substitution in transition-metal oxides is an important approach to improve electrocatalysts ...
The development of cost-efficient and long-term stable catalysts for the oxygen evolution reaction (...
The water-splitting reaction provides a promising mechanism to store renewable energies in the form ...
Cost-efficient and durable oxygen evolution catalysts are in great demand, which are dominated not o...
Herein, we report synthesis of Co3V2O8 nanoparticles for an electrocatalyst of seawater batteries. T...
Cobalt vanadium oxides (CoV2O6 and Co2V2O7) have been one-step synthesized by a soft chemistry route...
The energy crisis and related environmental issue is an important issue at a global level. Water ele...
© 2018, Materials Review Magazine. All right reserved. The over-exploitation and over-utilization of...
The fabrication and design of earth-abundant and high-performance catalysts for the oxygen evolution...
<p>Development of efficient, affordable electrocatalysts for the oxygen evolution reaction and<br>th...
Cost-efficient and durable oxygen evolution catalysts are in great demand, which are dominated not o...
The development of efficient ORR and OER oxide electrocatalysts has become the major challenge in su...
Oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) are important for developing ene...
Clarifying and controlling the surface catalytic active sites is at the heart of developing low-cost...
Cation substitution in transition metal oxides is an important approach to improve electrocatalysts ...
Cation substitution in transition-metal oxides is an important approach to improve electrocatalysts ...
The development of cost-efficient and long-term stable catalysts for the oxygen evolution reaction (...
The water-splitting reaction provides a promising mechanism to store renewable energies in the form ...
Cost-efficient and durable oxygen evolution catalysts are in great demand, which are dominated not o...
Herein, we report synthesis of Co3V2O8 nanoparticles for an electrocatalyst of seawater batteries. T...
Cobalt vanadium oxides (CoV2O6 and Co2V2O7) have been one-step synthesized by a soft chemistry route...
The energy crisis and related environmental issue is an important issue at a global level. Water ele...
© 2018, Materials Review Magazine. All right reserved. The over-exploitation and over-utilization of...
The fabrication and design of earth-abundant and high-performance catalysts for the oxygen evolution...
<p>Development of efficient, affordable electrocatalysts for the oxygen evolution reaction and<br>th...
Cost-efficient and durable oxygen evolution catalysts are in great demand, which are dominated not o...
The development of efficient ORR and OER oxide electrocatalysts has become the major challenge in su...
Oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) are important for developing ene...
Clarifying and controlling the surface catalytic active sites is at the heart of developing low-cost...