The durability and reactivity of catalysts can be effectively and precisely controlled through the careful design and engineering of their surface structures and morphologies. Herein, we develop a novel adsorption-calcination-reduction strategy to synthesize spinel transitional metal oxides with a unique necklace-like multishelled hollow structure exploiting sacrificial templates of carbonaceous microspheres, including NiCo2O4(NCO), CoMn2O4, and NiMn2O4. Importantly, benefiting from the unique structures and reduction treatment to offer rich oxygen vacancies, the unique reduced NCO (R-NCO) as a bifunctional electrocatalyst exhibits the dual characteristics of good stability as well as high electrocatalytic activity for both the hydrogen e...
The energy crisis and related environmental issue is an important issue at a global level. Water ele...
Developing highly active nonprecious metal and binder free bifunctional electrocatalysts for water s...
With the ever-rising demand for energy and the effects of global warming intensifies, we turned to r...
The durability and reactivity of catalysts can be effectively and precisely controlled through the c...
The durability and reactivity of catalysts can be effectively and precisely controlled through the c...
The durability and reactivity of catalysts can be effectively and precisely controlled through the c...
High valence transition metal oxide is significant for anode catalyst of proton membrane water elect...
The oxygen evolution reaction (OER) plays a key role in determining the performance of overall water...
Fossil fuels are urgent to be replaced with renewable energies to achieve carbon neutrality. Intermi...
Transition metal oxides and related nitrides/nitride-oxides represent a class of materials that have...
A method was proposed to synthesize hollow flower-like NiCo2O4 composed of porous nanosheets using a...
The energy crisis and related environmental issue is an important issue at a global level. Water ele...
Electrochemical splitting of water to hydrogen and oxygen with renewable energy input represents a k...
Unraveling the role of transition-metal doping in affecting the native spinel-structured nanosheets'...
The catalysts described in this thesis can be utilized in the systems that work by: storing energy, ...
The energy crisis and related environmental issue is an important issue at a global level. Water ele...
Developing highly active nonprecious metal and binder free bifunctional electrocatalysts for water s...
With the ever-rising demand for energy and the effects of global warming intensifies, we turned to r...
The durability and reactivity of catalysts can be effectively and precisely controlled through the c...
The durability and reactivity of catalysts can be effectively and precisely controlled through the c...
The durability and reactivity of catalysts can be effectively and precisely controlled through the c...
High valence transition metal oxide is significant for anode catalyst of proton membrane water elect...
The oxygen evolution reaction (OER) plays a key role in determining the performance of overall water...
Fossil fuels are urgent to be replaced with renewable energies to achieve carbon neutrality. Intermi...
Transition metal oxides and related nitrides/nitride-oxides represent a class of materials that have...
A method was proposed to synthesize hollow flower-like NiCo2O4 composed of porous nanosheets using a...
The energy crisis and related environmental issue is an important issue at a global level. Water ele...
Electrochemical splitting of water to hydrogen and oxygen with renewable energy input represents a k...
Unraveling the role of transition-metal doping in affecting the native spinel-structured nanosheets'...
The catalysts described in this thesis can be utilized in the systems that work by: storing energy, ...
The energy crisis and related environmental issue is an important issue at a global level. Water ele...
Developing highly active nonprecious metal and binder free bifunctional electrocatalysts for water s...
With the ever-rising demand for energy and the effects of global warming intensifies, we turned to r...