Although a copper catalyst has very interesting properties in CO2 electroreduction reaction (CO2RR), the high overpotential of this reaction and low selectivity of the catalyst for a single product are major hindrances to catalyst commercialization. In this work, monodisperse Cu-Pd nanoparticles (NPs) with various compositions are synthesized using the colloidal method. These NPs show a totally different catalytic performance than bulk Cu catalysts. Alloying Cu with Pd suppresses hydrocarbon production on the alloy NP catalyst surface. NPs with a 1:1 Cu -Pd ratio show the best catalytic activity for the conversion of CO2 to CO. At -0.9 V (vs. RHE), 87% CO Faradaic efficiency is achieved, as well as a high noble metal mass activity of 47 mA ...
Electrocatalytic reduction of CO2 (CO2RR) to multi-electron (> 2e–) products provides a green and su...
The electrochemical reduction of carbon dioxide is a surface reaction, involving the conversion of c...
Nanoparticle modified electrodes constitute an attractive way to tailor-make efficient carbon dioxid...
Selective and efficient conversion of carbon dioxide (CO2) to a reusable form of carbon via the elec...
The electrochemical CO2 reduction reaction (CO2RR), with water as a hydrogen source, has been attrac...
Engineering the morphology of nanomaterials and modifying their electronic structure are effective w...
Engineering the morphology of nanomaterials and modifying their electronic structure are effective w...
Finding a highly efficient, selective and economic approach for electrochemical reduction of aqueous...
Engineering the morphology of nanomaterials and modifying their electronic structure are effective w...
Engineering the morphology of nanomaterials and modifying their electronic structure are effective w...
Electrochemically converting CO2 into low-coordinated carbides provides a sustainable way to utilize...
Understanding the changes that a catalyst may experience on its surface during a reaction is crucial...
New catalysts are needed to achieve lower overpotentials and higher faradaic efficiency for desirabl...
The electrochemical conversion of CO2 holds promise to relieve the excess CO2 emission and store ren...
Controlling the morphology and composition of bimetallic nanoalloys is an effective way to tailor th...
Electrocatalytic reduction of CO2 (CO2RR) to multi-electron (> 2e–) products provides a green and su...
The electrochemical reduction of carbon dioxide is a surface reaction, involving the conversion of c...
Nanoparticle modified electrodes constitute an attractive way to tailor-make efficient carbon dioxid...
Selective and efficient conversion of carbon dioxide (CO2) to a reusable form of carbon via the elec...
The electrochemical CO2 reduction reaction (CO2RR), with water as a hydrogen source, has been attrac...
Engineering the morphology of nanomaterials and modifying their electronic structure are effective w...
Engineering the morphology of nanomaterials and modifying their electronic structure are effective w...
Finding a highly efficient, selective and economic approach for electrochemical reduction of aqueous...
Engineering the morphology of nanomaterials and modifying their electronic structure are effective w...
Engineering the morphology of nanomaterials and modifying their electronic structure are effective w...
Electrochemically converting CO2 into low-coordinated carbides provides a sustainable way to utilize...
Understanding the changes that a catalyst may experience on its surface during a reaction is crucial...
New catalysts are needed to achieve lower overpotentials and higher faradaic efficiency for desirabl...
The electrochemical conversion of CO2 holds promise to relieve the excess CO2 emission and store ren...
Controlling the morphology and composition of bimetallic nanoalloys is an effective way to tailor th...
Electrocatalytic reduction of CO2 (CO2RR) to multi-electron (> 2e–) products provides a green and su...
The electrochemical reduction of carbon dioxide is a surface reaction, involving the conversion of c...
Nanoparticle modified electrodes constitute an attractive way to tailor-make efficient carbon dioxid...