Heterogeneous single-atom catalysts (SACs) with atomically dispersed active metal centers represent an intermediary between heterogeneous and homogeneous catalysis. In this work, a porous organic polymer with aminopyridine functionalities was designed to fabricate a stable, atomically dispersed Ir catalyst. This Ir-based SAC exhibits excellent catalytic activity during the liquid-phase hydrogenation of CO2 to formate. The associated turnover number is as high as 25,135, representing the best performance yet for a heterogeneous conversion of CO2 to formate. Spectral characterization and density functional theory modeling demonstrate that the chemical structure of the Ir single-atom active site is analogous to that of a homogeneous mononuclea...
Hydrogenation of CO2 to formic acid using homogeneous catalysts is an attractive approach for the co...
The reaction mechanism of CO2 hydrogenation by pyridine-based Ru-PNP catalyst in the presence of DBU...
The bis-imidazolium salt, 1, 1-bis(N-methylimidazolium) acetate bromide, is a convenient precursor f...
Heterogeneous single-atom catalysts (SACs) with atomically dispersed active metal centers represent ...
Simply yet powerfully, single-atom catalysts (SACs) with atomically dispersed metal active centers o...
Simply yet powerfully, single-atom catalysts (SACs) with atomically dispersed metal active centers o...
Propelled by the vision of carbon-neutral energy systems, heterogeneous hydrogenation of CO2 to form...
The catalytic reactivity of molecular Rh(III)/Ir(III) catalysts immobilized on two- and three-dimens...
Formic acid is an efficient hydrogen carrier with great potential to change how energy will be suppl...
Heterogeneous immobilized molecular catalysis has gained significant attention as a platform for cre...
The bis-imidazolium salt, 1,1-bis(N-methylimidazolium) acetate bromide, is a convenient precursor fo...
The development of an efficient heterogeneous catalyst for storing H-2 into CO(2 )and releasing it f...
fffInternational audienceSingle-atom catalysts represent an intense topic of research due to their i...
Single-atom catalysts (SACs) as the new frontier in heterogeneous catalysis have attracted increasin...
The catalytic hydrogenation of CO2 to formic acid is one of the most promising pathways towards a re...
Hydrogenation of CO2 to formic acid using homogeneous catalysts is an attractive approach for the co...
The reaction mechanism of CO2 hydrogenation by pyridine-based Ru-PNP catalyst in the presence of DBU...
The bis-imidazolium salt, 1, 1-bis(N-methylimidazolium) acetate bromide, is a convenient precursor f...
Heterogeneous single-atom catalysts (SACs) with atomically dispersed active metal centers represent ...
Simply yet powerfully, single-atom catalysts (SACs) with atomically dispersed metal active centers o...
Simply yet powerfully, single-atom catalysts (SACs) with atomically dispersed metal active centers o...
Propelled by the vision of carbon-neutral energy systems, heterogeneous hydrogenation of CO2 to form...
The catalytic reactivity of molecular Rh(III)/Ir(III) catalysts immobilized on two- and three-dimens...
Formic acid is an efficient hydrogen carrier with great potential to change how energy will be suppl...
Heterogeneous immobilized molecular catalysis has gained significant attention as a platform for cre...
The bis-imidazolium salt, 1,1-bis(N-methylimidazolium) acetate bromide, is a convenient precursor fo...
The development of an efficient heterogeneous catalyst for storing H-2 into CO(2 )and releasing it f...
fffInternational audienceSingle-atom catalysts represent an intense topic of research due to their i...
Single-atom catalysts (SACs) as the new frontier in heterogeneous catalysis have attracted increasin...
The catalytic hydrogenation of CO2 to formic acid is one of the most promising pathways towards a re...
Hydrogenation of CO2 to formic acid using homogeneous catalysts is an attractive approach for the co...
The reaction mechanism of CO2 hydrogenation by pyridine-based Ru-PNP catalyst in the presence of DBU...
The bis-imidazolium salt, 1, 1-bis(N-methylimidazolium) acetate bromide, is a convenient precursor f...