Trilayered Pd/MnOx/Pd nanomembranes are fabricated as the cathode catalysts for Li‐O2 batteries. The combination of Pd and MnOx facilitates the transport of electrons, lithium ions, and oxygen‐containing intermediates, thus effectively decomposing the discharge product Li2O2 and significantly lowering the charge overpotential and enhancing the power efficiency. This is promising for future environmentally friendly applications
A lithium-rich layered structure in lithium-ion batteries (LIBs) has attracted much attention due to...
This report investigates the influence of electrolyte selection and the addition of Pd nanoparticle ...
Since their commercialization Li-ion batteries have relied on the use of layered oxides (LiMO2) as p...
Li-O2 batteries have attracted world-wide research interest as an appealing candidate for future ene...
Lithium-oxygen batteries have a great potential to enhance the gravimetric energy density of fully p...
Clean energy sources and sustainable environments have been very important research areas in the 21s...
The global effort to improve the lifetime, power densities and energy efficiency of energy storage a...
High energy density batteries have garnered much attention in recent years due to their demand in el...
Batteries are the global solution for the future energy crisis emerging from depleting fossil fuels ...
This thesis focuses on several approaches for the development of high charge/discharge rate lithium-...
The lithium-oxygen battery, of much interest because of its very high-energy density, presents many ...
Lithium-ion batteries (LIBs) have become an essential commodity ever since their commercialization i...
The electrochemical behaviour of MnO2 nanorod and Super P carbon based Li-O2 battery cathodes in wat...
Among all the electrocatalysts for Lithium-Air battery (Li-air), Platinum Pt is the best performing ...
To satisfy the growing demand for high-energy and high-power-densities Lithium-ion Batteries (LIBs),...
A lithium-rich layered structure in lithium-ion batteries (LIBs) has attracted much attention due to...
This report investigates the influence of electrolyte selection and the addition of Pd nanoparticle ...
Since their commercialization Li-ion batteries have relied on the use of layered oxides (LiMO2) as p...
Li-O2 batteries have attracted world-wide research interest as an appealing candidate for future ene...
Lithium-oxygen batteries have a great potential to enhance the gravimetric energy density of fully p...
Clean energy sources and sustainable environments have been very important research areas in the 21s...
The global effort to improve the lifetime, power densities and energy efficiency of energy storage a...
High energy density batteries have garnered much attention in recent years due to their demand in el...
Batteries are the global solution for the future energy crisis emerging from depleting fossil fuels ...
This thesis focuses on several approaches for the development of high charge/discharge rate lithium-...
The lithium-oxygen battery, of much interest because of its very high-energy density, presents many ...
Lithium-ion batteries (LIBs) have become an essential commodity ever since their commercialization i...
The electrochemical behaviour of MnO2 nanorod and Super P carbon based Li-O2 battery cathodes in wat...
Among all the electrocatalysts for Lithium-Air battery (Li-air), Platinum Pt is the best performing ...
To satisfy the growing demand for high-energy and high-power-densities Lithium-ion Batteries (LIBs),...
A lithium-rich layered structure in lithium-ion batteries (LIBs) has attracted much attention due to...
This report investigates the influence of electrolyte selection and the addition of Pd nanoparticle ...
Since their commercialization Li-ion batteries have relied on the use of layered oxides (LiMO2) as p...