Developing a cost-effective, scalable, and efficient electrocatalyst for the hydrogen evolution reaction (HER) is the heart of producing pure hydrogen in practical applications. In this work, a unique approach to allow ruthenium (Ru) nanoparticles on carboxyl-functionalized porous sphere carbon (CF-Ru@PSC) for an aqueous Zn-CO2 system is reported. The CF-Ru@PSC catalyst was produced by inducing additional junction sites between metallic Ru and the carbon substrate for enhanced HER properties under a CO2 saturated condition. The strongly bonded Ru-C caused electron transfer from the bottom side of the metallic Ru to the PSC substrate, leading to efficient hydrogen adsorption energy of the surface. The DFT calculations and XAFS investigation ...
Ru nanoparticles have been demonstrated to be highly active electrocatalysts for the hydrogen evolut...
Multielectron reductions such as the hydrogen evolution reaction (HER) play an important role in the...
Hydrogen is widely considered an ideal green energy carrier and a leading candidate to replace nonre...
Developing a cost-effective, scalable, and efficient electrocatalyst for the hydrogen evolution reac...
International audienceMultielectron reductions such as the hydrogen evolution reaction (HER) play an...
Developing efficient and stable electrocatalysts is crucial for the electrochemical production of pu...
Designing highly active, stable, and cost-efficient electrocatalysts as alternatives to replace Pt i...
International audienceDevelopment of high-performance pH-universal electrocatalyst for hydrogen evol...
The coordination chemistry of the metal-support interface largely determines the electrocatalytic pe...
Abstract Ru nanoparticles (NPs) and single atoms (SAs)‐based materials have been investigated as alt...
Compared with hydrogen evolution reaction (HER) under acidic conditions, the kinetic steps of alkali...
Although the maximized dispersion of metal atoms has been realized in the single-atom catalysts, fur...
Hydrogen evolution reaction is an important process in electrochemical energy technologies. Herein, ...
The hydrogen evolution reaction (HER) is a crucial step in electro-chemical water splitting and dema...
International audienceFour different cathodes for the hydrogen evolution reaction (HER) have been de...
Ru nanoparticles have been demonstrated to be highly active electrocatalysts for the hydrogen evolut...
Multielectron reductions such as the hydrogen evolution reaction (HER) play an important role in the...
Hydrogen is widely considered an ideal green energy carrier and a leading candidate to replace nonre...
Developing a cost-effective, scalable, and efficient electrocatalyst for the hydrogen evolution reac...
International audienceMultielectron reductions such as the hydrogen evolution reaction (HER) play an...
Developing efficient and stable electrocatalysts is crucial for the electrochemical production of pu...
Designing highly active, stable, and cost-efficient electrocatalysts as alternatives to replace Pt i...
International audienceDevelopment of high-performance pH-universal electrocatalyst for hydrogen evol...
The coordination chemistry of the metal-support interface largely determines the electrocatalytic pe...
Abstract Ru nanoparticles (NPs) and single atoms (SAs)‐based materials have been investigated as alt...
Compared with hydrogen evolution reaction (HER) under acidic conditions, the kinetic steps of alkali...
Although the maximized dispersion of metal atoms has been realized in the single-atom catalysts, fur...
Hydrogen evolution reaction is an important process in electrochemical energy technologies. Herein, ...
The hydrogen evolution reaction (HER) is a crucial step in electro-chemical water splitting and dema...
International audienceFour different cathodes for the hydrogen evolution reaction (HER) have been de...
Ru nanoparticles have been demonstrated to be highly active electrocatalysts for the hydrogen evolut...
Multielectron reductions such as the hydrogen evolution reaction (HER) play an important role in the...
Hydrogen is widely considered an ideal green energy carrier and a leading candidate to replace nonre...