Abstract: Using a magnetron sputtering approach that allows size-controlled formation of nanoclusters, we have created palladium nanoclusters that combine the features of both heterogeneous and homogeneous catalysts. Here we report the atomic structures and electronic environments of a series of metal nanoclusters in ionic liquids at different stages of formation, leading to the discovery of Pd nanoclusters with a core of ca. 2 nm surrounded by a diffuse dynamic shell of atoms in [C4C1Im][NTf2]. Comparison of the catalytic activity of Pd nanoclusters in alkene cyclopropanation reveals that the atomically dynamic surface is critically important, increasing the activity by a factor of ca. 2 when compared to compact nanoclusters of similar siz...
This work aims to clarify the nanostructural transformation accompanying the loss of activity and se...
The field of heterogeneous catalysis has received a remarkable amount of interest from scientific an...
A simple experiment based on exclusion of Pd nanoclusters was used to identify the true catalytic sp...
Using a magnetron sputtering approach that allows size-controlled formation of nanoclusters, we have...
Using a magnetron sputtering approach that allows size-controlled formation of nanoclusters, we have...
Using a magnetron sputtering approach that allows size-controlled formation of nanoclusters, we have...
Transition metal clusters and colloids of narrow particle size distributions in the range 1-10 nm ar...
Control of heterogeneous catalytic sites through their surrounding chemical environment at an atomic...
Recently, a so-called 'crown-jewel' concept of preparation of Au/Pd-based colloidal nanoclusters has...
The use of Ionic Liquids (ILs) to enhance the electrocatalytic activity of metal nanoparticles has g...
The development of high-performance nanocatalysts relies essentially on the generation of stable and...
© The Royal Society of Chemistry 2015. In this communication we report the synthesis of Pd nanoparti...
By studying the nanocatalysis of individual Pd nanoparticles (Pd NPs) in two shapes (cube with (100)...
The development of new methods to prepare Pd-containing nanomaterials for catalysis are reported. Mo...
The field of heterogeneous catalysis has received a remarkable amount of interest from scientific an...
This work aims to clarify the nanostructural transformation accompanying the loss of activity and se...
The field of heterogeneous catalysis has received a remarkable amount of interest from scientific an...
A simple experiment based on exclusion of Pd nanoclusters was used to identify the true catalytic sp...
Using a magnetron sputtering approach that allows size-controlled formation of nanoclusters, we have...
Using a magnetron sputtering approach that allows size-controlled formation of nanoclusters, we have...
Using a magnetron sputtering approach that allows size-controlled formation of nanoclusters, we have...
Transition metal clusters and colloids of narrow particle size distributions in the range 1-10 nm ar...
Control of heterogeneous catalytic sites through their surrounding chemical environment at an atomic...
Recently, a so-called 'crown-jewel' concept of preparation of Au/Pd-based colloidal nanoclusters has...
The use of Ionic Liquids (ILs) to enhance the electrocatalytic activity of metal nanoparticles has g...
The development of high-performance nanocatalysts relies essentially on the generation of stable and...
© The Royal Society of Chemistry 2015. In this communication we report the synthesis of Pd nanoparti...
By studying the nanocatalysis of individual Pd nanoparticles (Pd NPs) in two shapes (cube with (100)...
The development of new methods to prepare Pd-containing nanomaterials for catalysis are reported. Mo...
The field of heterogeneous catalysis has received a remarkable amount of interest from scientific an...
This work aims to clarify the nanostructural transformation accompanying the loss of activity and se...
The field of heterogeneous catalysis has received a remarkable amount of interest from scientific an...
A simple experiment based on exclusion of Pd nanoclusters was used to identify the true catalytic sp...