© The Author(s) 2016. Metal oxides with a tunnelled structure are attractive as charge storage materials for rechargeable batteries and supercapacitors, since the tunnels enable fast reversible insertion/extraction of charge carriers (for example, lithium ions). Common synthesis methods can introduce large cations such as potassium, barium and ammonium ions into the tunnels, but how these cations affect charge storage performance is not fully understood. Here, we report the role of tunnel cations in governing the electrochemical properties of electrode materials by focusing on potassium ions in α-MnO2. We show that the presence of cations inside 2 × 2 tunnels of manganese dioxide increases the electronic conductivity, and improves lithium i...
The cost of batteries is becoming as important as the energy density for large-scale electrochemical...
Potassium-ion batteries (PIBs) are an emerging, affordable, and environmentally friendly alternative...
Electrolyte additions are used to control the functionality of a nanostructured oxide. Dopant ions a...
Single nanowires of two manganese oxide polymorphs (α-MnO2 and todorokite manganese oxide), which di...
Energy storage and the production of fresh water are essential technologies to develop as our demand...
It is obvious to harness the intermittent renewable energy resources, energy storage applications, s...
It is obvious to harness the intermittent renewable energy resources, energy storage applications, s...
ABSTRACT: Manganese oxide materials are attracting considerable interest for clean energy storage ap...
Structural, computational and electrochemical investigations are combined to study the intercalation...
Electrochemical supercapacitors utilizing α-MnO<sub>2</sub> offer the possibility of both high power...
Manganese dioxide is regarded as a promising energy functional material due to its open tunnel struc...
The heavy metal ion adsorption performance of birnessite (a layer-structured manganese oxide) can be...
A proportional relationship between the specific capacitance of MnO2 and the percentage of effective...
Research Doctorate - Doctor of Philosophy (PhD)In this thesis the relationship between the physico-c...
Manganese oxide materials are attracting considerable interest for clean energy storage applications...
The cost of batteries is becoming as important as the energy density for large-scale electrochemical...
Potassium-ion batteries (PIBs) are an emerging, affordable, and environmentally friendly alternative...
Electrolyte additions are used to control the functionality of a nanostructured oxide. Dopant ions a...
Single nanowires of two manganese oxide polymorphs (α-MnO2 and todorokite manganese oxide), which di...
Energy storage and the production of fresh water are essential technologies to develop as our demand...
It is obvious to harness the intermittent renewable energy resources, energy storage applications, s...
It is obvious to harness the intermittent renewable energy resources, energy storage applications, s...
ABSTRACT: Manganese oxide materials are attracting considerable interest for clean energy storage ap...
Structural, computational and electrochemical investigations are combined to study the intercalation...
Electrochemical supercapacitors utilizing α-MnO<sub>2</sub> offer the possibility of both high power...
Manganese dioxide is regarded as a promising energy functional material due to its open tunnel struc...
The heavy metal ion adsorption performance of birnessite (a layer-structured manganese oxide) can be...
A proportional relationship between the specific capacitance of MnO2 and the percentage of effective...
Research Doctorate - Doctor of Philosophy (PhD)In this thesis the relationship between the physico-c...
Manganese oxide materials are attracting considerable interest for clean energy storage applications...
The cost of batteries is becoming as important as the energy density for large-scale electrochemical...
Potassium-ion batteries (PIBs) are an emerging, affordable, and environmentally friendly alternative...
Electrolyte additions are used to control the functionality of a nanostructured oxide. Dopant ions a...