Surface faceting in nanoparticles can profoundly impact the rate and selectivity of chemical transformations. However, the precise role of surface termination can be challenging to elucidate because many measurements are performed on ensembles of particles and do not have sufficient spatial resolution to observe reactions at the single and subparticle level. Here, we investigate solute intercalation in individual palladium hydride nanoparticles with distinct surface terminations. Using a combination of diffraction, electron energy loss spectroscopy, and dark-field contrast in an environmental transmission electron microscope (TEM), we compare the thermodynamics and directly visualize the kinetics of 40–70 nm {100}-terminated cubes and {111}...
Physicochemical properties of nanoparticles may depend on their size and shape and are traditionally...
Phased out: A combination of electrochemical and optical techniques is used to study the interaction...
The mechanism of hydrogen recombination on a Pd(111) single crystal and well-defined Pd nanoparticle...
Phase transitions in reactive environments are crucially important in energy and information storage...
Phase transitions in reactive environments are crucially important in energy and information storage...
Many energy storage materials undergo large volume changes during charging and discharging. The resu...
Nanorods are promising components of energy and information storage devices that rely on solute-driv...
Many energy- and information-storage processes rely on phase changes of nanomaterials in reacti...
Grain boundaries separate crystallites in solids and influence material properties, as widely docume...
Palladium absorbs large volumetric quantities of hydrogen at room temperature and ambient pressure, ...
Palladium-hydrogen (Pd-H) is a prototypical system for studying solute-induced phase transformation ...
By studying the nanocatalysis of individual Pd nanoparticles (Pd NPs) in two shapes (cube with (100)...
This work aims to clarify the nanostructural transformation accompanying the loss of activity and se...
Under low-pressure conditions, hydrogenation of alkenes, such as 2-pentene and ethene, is shown to o...
This is the accepted manuscript and supporting information of an article published in the journal Sm...
Physicochemical properties of nanoparticles may depend on their size and shape and are traditionally...
Phased out: A combination of electrochemical and optical techniques is used to study the interaction...
The mechanism of hydrogen recombination on a Pd(111) single crystal and well-defined Pd nanoparticle...
Phase transitions in reactive environments are crucially important in energy and information storage...
Phase transitions in reactive environments are crucially important in energy and information storage...
Many energy storage materials undergo large volume changes during charging and discharging. The resu...
Nanorods are promising components of energy and information storage devices that rely on solute-driv...
Many energy- and information-storage processes rely on phase changes of nanomaterials in reacti...
Grain boundaries separate crystallites in solids and influence material properties, as widely docume...
Palladium absorbs large volumetric quantities of hydrogen at room temperature and ambient pressure, ...
Palladium-hydrogen (Pd-H) is a prototypical system for studying solute-induced phase transformation ...
By studying the nanocatalysis of individual Pd nanoparticles (Pd NPs) in two shapes (cube with (100)...
This work aims to clarify the nanostructural transformation accompanying the loss of activity and se...
Under low-pressure conditions, hydrogenation of alkenes, such as 2-pentene and ethene, is shown to o...
This is the accepted manuscript and supporting information of an article published in the journal Sm...
Physicochemical properties of nanoparticles may depend on their size and shape and are traditionally...
Phased out: A combination of electrochemical and optical techniques is used to study the interaction...
The mechanism of hydrogen recombination on a Pd(111) single crystal and well-defined Pd nanoparticle...