The oxygen evolution reaction involves complex interplay among electrolyte, solid catalyst, and gas-phase and liquid-phase reactants and products. Monitoring catalysis interfaces between catalyst and electrolyte can provide valuable insights into catalytic ability. But it is a challenging task due to the additive solid supports in traditional measurement. Here we design a nanodevice platform and combine on-chip electrochemical impedance spectroscopy measurement, temporary I-V measurement of an individual nanosheet, and molecular dynamic calculations to provide a direct way for nanoscale catalytic diagnosis. By removing O2 in electrolyte, a dramatic decrease in Tafel slope of over 20% and early onset potential of 1.344 V vs. reversible hydro...
Electrochemical water splitting to generate hydrogen has been identified as a possible solution to t...
The role of mesoscopic mass transport and re-adsorption effects in electrocatalytic reactions was in...
Electrocatalytic oxygen evolution reaction (OER) is a crucial anode reaction where electrocatalysts ...
The oxygen evolution reaction involves complex interplay among electrolyte, solid catalyst, and gas-...
Fuel cell and water electrolyzer technology have been intensively investigated in the last decades t...
Electrochemistry of metallic nanostructures has played an essential role in a wide range of energy-r...
Hydrogen fuel cells are promising devices that can be utilized as a carbon-neutral mobile energy sou...
Zero-emission hydrogen and oxygen production are critical for the UK to reach net-zero greenhouse ga...
Thesis (Ph.D.)--University of Washington, 2019This dissertation presents the development and applica...
Intense current research is directed at the evaluation of nanomaterials as catalysts for the oxygen ...
Single-entity electrochemistry allows for assessing electrocatalytic activities of individual materi...
Electrochemical interfaces used for sensing, (electro)catalysis, and energy storage are usually nano...
Electrocatalysis plays an essential role in various clean energy technologies, including fuel cells ...
Single-entity electrochemistry allows for assessing electrocatalytic activities of individual materi...
Mixed nickel-iron (Ni-Fe) compounds have recently emerged as promising non-precious electrocatalysts...
Electrochemical water splitting to generate hydrogen has been identified as a possible solution to t...
The role of mesoscopic mass transport and re-adsorption effects in electrocatalytic reactions was in...
Electrocatalytic oxygen evolution reaction (OER) is a crucial anode reaction where electrocatalysts ...
The oxygen evolution reaction involves complex interplay among electrolyte, solid catalyst, and gas-...
Fuel cell and water electrolyzer technology have been intensively investigated in the last decades t...
Electrochemistry of metallic nanostructures has played an essential role in a wide range of energy-r...
Hydrogen fuel cells are promising devices that can be utilized as a carbon-neutral mobile energy sou...
Zero-emission hydrogen and oxygen production are critical for the UK to reach net-zero greenhouse ga...
Thesis (Ph.D.)--University of Washington, 2019This dissertation presents the development and applica...
Intense current research is directed at the evaluation of nanomaterials as catalysts for the oxygen ...
Single-entity electrochemistry allows for assessing electrocatalytic activities of individual materi...
Electrochemical interfaces used for sensing, (electro)catalysis, and energy storage are usually nano...
Electrocatalysis plays an essential role in various clean energy technologies, including fuel cells ...
Single-entity electrochemistry allows for assessing electrocatalytic activities of individual materi...
Mixed nickel-iron (Ni-Fe) compounds have recently emerged as promising non-precious electrocatalysts...
Electrochemical water splitting to generate hydrogen has been identified as a possible solution to t...
The role of mesoscopic mass transport and re-adsorption effects in electrocatalytic reactions was in...
Electrocatalytic oxygen evolution reaction (OER) is a crucial anode reaction where electrocatalysts ...