Pyrolysis of a Ni based metal organic framework in NH3 yields Ni nanoparticles with surface nitridation together with thin carbon coating layers. The subtle surface modification significantly improves the catalytic performance for the hydrogen evolution reaction (HER). The surface modified Ni nanoparticles show a low overpotential of only 88 mV at a current density of 20 mA cm(-2), which is one of the most efficient HER catalysts based on metallic Ni reported so far. The results suggest that controlled pyrolysis of MOFs is an effective method to prepare highly efficient noble metal free HER catalysts.National Natural Science Foundation of China [U1201241, 11375020, 51431001, 21321001]SCI(E)EIARTICLEzhengjie@pku.edu.cn; xgli@pku.edu.cn3216...
A nanosized Ni@C composite (Ni particles: < 10 nm) was successfully synthesized by casting a Ni-base...
The rapid development of hydrogen energy is strongly dependent on the economic and efficient product...
The development of low-cost hybrid water splitting-biosynthetic systems that mimic natural photosynt...
A highly efficient Ni–Mo bimetallic catalyst for the hydrogen evolution reaction can be obtained fro...
Thermal decomposition of metal–organic frameworks (MOFs) is widely used to prepare metal catalysts f...
Earth-abundant metals are attractive alternatives to the noble metal composite catalysts that are us...
Earth-abundant metals are attractive alternatives to the noble metal composite catalysts that are us...
Despite being promising substitutes for noble metal catalysts used in hydrogen evolution reaction (H...
Catalytic hydrogenation is a vital industrial means to produce value-added fuels and fine chemicals,...
A rational design of transition metal catalysts to achieve selective hydrogenation of furfural (FFR)...
The hydrogen evolution reaction (HER) is of critical importance for sustainable hydrogen production ...
Highly effective yet affordable non-noble metal catalysts are a key component for advances in hydrog...
Non-noble metal nanoparticles are notoriously difficult to prepare and stabilize with appropriate di...
International audienceThe conversion of biomass as a sustainable path to access valuable chemicals a...
Searching for earth-abundant and efficient electrocatalysts for large-scale hydrogen generation from...
A nanosized Ni@C composite (Ni particles: < 10 nm) was successfully synthesized by casting a Ni-base...
The rapid development of hydrogen energy is strongly dependent on the economic and efficient product...
The development of low-cost hybrid water splitting-biosynthetic systems that mimic natural photosynt...
A highly efficient Ni–Mo bimetallic catalyst for the hydrogen evolution reaction can be obtained fro...
Thermal decomposition of metal–organic frameworks (MOFs) is widely used to prepare metal catalysts f...
Earth-abundant metals are attractive alternatives to the noble metal composite catalysts that are us...
Earth-abundant metals are attractive alternatives to the noble metal composite catalysts that are us...
Despite being promising substitutes for noble metal catalysts used in hydrogen evolution reaction (H...
Catalytic hydrogenation is a vital industrial means to produce value-added fuels and fine chemicals,...
A rational design of transition metal catalysts to achieve selective hydrogenation of furfural (FFR)...
The hydrogen evolution reaction (HER) is of critical importance for sustainable hydrogen production ...
Highly effective yet affordable non-noble metal catalysts are a key component for advances in hydrog...
Non-noble metal nanoparticles are notoriously difficult to prepare and stabilize with appropriate di...
International audienceThe conversion of biomass as a sustainable path to access valuable chemicals a...
Searching for earth-abundant and efficient electrocatalysts for large-scale hydrogen generation from...
A nanosized Ni@C composite (Ni particles: < 10 nm) was successfully synthesized by casting a Ni-base...
The rapid development of hydrogen energy is strongly dependent on the economic and efficient product...
The development of low-cost hybrid water splitting-biosynthetic systems that mimic natural photosynt...