Herein we report the selectivity, stability, and electrochemical characterization of cobalt hexacyanoferrate, the Co–Fe Prussian Blue derivative (CoFePB), as a formate/formic acid oxidation electrocatalyst in aqueous media. CoFePB is able to quantitatively catalyze (100% Faradaic efficiency within less than 8% standard error at pH 5) the electrochemical oxidation of formate to CO2 over a pH range of 1–13. This quantitative formate elecrooxidation is possible due to the exclusive selectivity of the catalyst in a wide potential window (from ca. 1.2 to 1.7 V vs RHE), where no other substrate in aqueous conditions is activated: neither other organic molecules, such as alcohols or acids, nor water itself. CoFePB is one of the first heterogeneous...
The efficient electrochemical production and use of CO₂- based solar fuels is a problem of precisely...
Metal–organic framework (MOF)-derived Co-N-C catalysts with isolated single cobalt atoms have been s...
Facile interconversion between CO<sub>2</sub> and formate/formic acid (FA) is of broad interest in e...
Herein we report the selectivity, stability, and electrochemical characterization of cobalt hexacyan...
Cobalt hexacyanoferrate, the Co–Fe Prussian blue derivative (CoFePB), is an effective, selective and...
The development of upscalable oxygen evolving electrocatalysts from earth-abundant metals able to op...
C–H bond formation with CO<sub>2</sub> to selectively form products such as formate (HCOO<sup>–</sup...
C–H bond formation with CO<sub>2</sub> to selectively form products such as formate (HCOO<sup>–</sup...
This work was supported by Japanese Society for the Promotion of Science (JSPS) KAKENHI Grants Nos. ...
ABSTRACT: Electro-oxidation of formic acid on Pt in acid is one of the most fundamental model reacti...
We report a study using Pt(111) and Pt(100) electrodes of the role of adsorbed formate in both the d...
Electrochemical CO2 reduction (CO2RR) is an environmentally friendly approach to transform greenhous...
The electrocatalytic oxidation of formic acid (HCOOH) and formate (HCOO-) to CO2 on platinum has bee...
CO2 electroreduction to formic acid and formate has been focus of great research attention in the la...
Co/Fe Prussian Blue coordination networks have recently been investigated for heterogeneous water ox...
The efficient electrochemical production and use of CO₂- based solar fuels is a problem of precisely...
Metal–organic framework (MOF)-derived Co-N-C catalysts with isolated single cobalt atoms have been s...
Facile interconversion between CO<sub>2</sub> and formate/formic acid (FA) is of broad interest in e...
Herein we report the selectivity, stability, and electrochemical characterization of cobalt hexacyan...
Cobalt hexacyanoferrate, the Co–Fe Prussian blue derivative (CoFePB), is an effective, selective and...
The development of upscalable oxygen evolving electrocatalysts from earth-abundant metals able to op...
C–H bond formation with CO<sub>2</sub> to selectively form products such as formate (HCOO<sup>–</sup...
C–H bond formation with CO<sub>2</sub> to selectively form products such as formate (HCOO<sup>–</sup...
This work was supported by Japanese Society for the Promotion of Science (JSPS) KAKENHI Grants Nos. ...
ABSTRACT: Electro-oxidation of formic acid on Pt in acid is one of the most fundamental model reacti...
We report a study using Pt(111) and Pt(100) electrodes of the role of adsorbed formate in both the d...
Electrochemical CO2 reduction (CO2RR) is an environmentally friendly approach to transform greenhous...
The electrocatalytic oxidation of formic acid (HCOOH) and formate (HCOO-) to CO2 on platinum has bee...
CO2 electroreduction to formic acid and formate has been focus of great research attention in the la...
Co/Fe Prussian Blue coordination networks have recently been investigated for heterogeneous water ox...
The efficient electrochemical production and use of CO₂- based solar fuels is a problem of precisely...
Metal–organic framework (MOF)-derived Co-N-C catalysts with isolated single cobalt atoms have been s...
Facile interconversion between CO<sub>2</sub> and formate/formic acid (FA) is of broad interest in e...