Oxygen evolution reaction (OER) is critical for producing high purity hydrogen and oxygen via electrocatalytic water splitting. In this work, single crystalline, nanoporous nickel oxide (NiO) was prepared using a hydro thermal, soft-templated synthesis route followed by calcination at different temperatures. It is shown that the NiO crystals have a cubic lattice, and the pore size can be tuned from similar to 1 to similar to 70 nm by varying the calcination temperature, i.e. variation from micro to macroporosity. The NiOs catalytic performance as electrocatalysts was evaluated in OER, both thermodynamically and kinetically. Mesoporous NiO with calcination temperature of 400 degrees C had the lowest overpotential (335 mV) required @ 10 mA/cm...
Designing low-cost and highly efficient electrocatalysts based on widely abundant elements is highly...
Highly porous 3d transition metal oxide nanostructures are opening up the exciting area of oxygen ev...
Establishing a correlation between the crystal structure and electrocatalytic activity is crucial to...
Oxygen evolution reaction (OER) is critical for producing high purity hydrogen and oxygen via electr...
Mesoporous NiO samples with different morphology were synthesized by hydrothermal method, and they w...
Tremendous efforts have been devoted to develop low-cost and highly active electrocatalysts for oxyg...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
The growing demand of energy coupled with the limited supply of the major energy sources such as fos...
In this thesis, nickel oxide was investigated as an electrocatalyst and electrode material in both a...
Nanoporous Ni–Co binary oxide layers were electrochemically fabricated by deposition followed by ano...
Understanding how electrocatalysts function in a nucleophile oxidation reaction (NOR) on anode, repl...
The electrocatalytic oxygen evolution reaction (OER) presents the key transformation in electrochemi...
Electrochemical water splitting has become increasingly important in energy-related applications. Es...
Mixed nickel-iron oxides are of great interest as electrocatalysts for the oxygen evolution reaction...
Developing efficient and low-cost oxygen evolution reaction (OER) electrodes is a pressing but still...
Designing low-cost and highly efficient electrocatalysts based on widely abundant elements is highly...
Highly porous 3d transition metal oxide nanostructures are opening up the exciting area of oxygen ev...
Establishing a correlation between the crystal structure and electrocatalytic activity is crucial to...
Oxygen evolution reaction (OER) is critical for producing high purity hydrogen and oxygen via electr...
Mesoporous NiO samples with different morphology were synthesized by hydrothermal method, and they w...
Tremendous efforts have been devoted to develop low-cost and highly active electrocatalysts for oxyg...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
The growing demand of energy coupled with the limited supply of the major energy sources such as fos...
In this thesis, nickel oxide was investigated as an electrocatalyst and electrode material in both a...
Nanoporous Ni–Co binary oxide layers were electrochemically fabricated by deposition followed by ano...
Understanding how electrocatalysts function in a nucleophile oxidation reaction (NOR) on anode, repl...
The electrocatalytic oxygen evolution reaction (OER) presents the key transformation in electrochemi...
Electrochemical water splitting has become increasingly important in energy-related applications. Es...
Mixed nickel-iron oxides are of great interest as electrocatalysts for the oxygen evolution reaction...
Developing efficient and low-cost oxygen evolution reaction (OER) electrodes is a pressing but still...
Designing low-cost and highly efficient electrocatalysts based on widely abundant elements is highly...
Highly porous 3d transition metal oxide nanostructures are opening up the exciting area of oxygen ev...
Establishing a correlation between the crystal structure and electrocatalytic activity is crucial to...