The properties of nanocrystals are highly dependent on their morphology, composition, and structure. Tailored synthesis over these parameters is successfully applied for the production of nanocrystals with desired properties for specific applications. However, in order to obtain full control over the properties, the behavior of nanocrystals under external stimuli and application conditions needs to be understood. Herein, using Ag-NiPx nanocrystals as a model system, we investigate the structural evolution upon thermal treatment by in situ aberration-corrected scanning transmission electron microscopy. A combination of real-time imaging with elemental analysis enables the observation of the transformation from a Ag-NiPx core shell configurat...
A newly developed SiN microhotplate allows specimens to be studied at temperatures up to 1000 K at a...
YesUnderstanding the effect of physical parameters (e.g., temperature) on crystallisation dynamics i...
Using transition path sampling computer simulations, we reveal the nucleation mechanism of a pressur...
The properties of nanocrystals are highly dependent on their morphology, composition, and structure....
The properties of nanocrystals are highly depending on their morphology, composition and structure. ...
The properties of nanocrystals are highly dependent on their morphology, composition, and structure....
The properties of nanocrystals are highly dependent on their morphology, composition and structure. ...
A general trend towards surface reconstructions which eliminate open facets in favour of close-packe...
Shape control is of key importance in utilizing the structure-property relationship of nanocrystals....
It has been generally accepted that crystal shrinkage during Ostwald ripening can be understood simp...
A newly developed SiN microhotplate allows specimens to be studied at temperatures up to 1000 K at a...
Most properties of nanocrystalline materials are shape-dependent, providing their exquisite tunabili...
Shape control is of key importance in utilizing the structure–property relationship of nanocrystals....
A newly developed SiN microhotplate allows specimens to be studied at temperatures up to 1000 K at a...
YesUnderstanding the effect of physical parameters (e.g., temperature) on crystallisation dynamics i...
Using transition path sampling computer simulations, we reveal the nucleation mechanism of a pressur...
The properties of nanocrystals are highly dependent on their morphology, composition, and structure....
The properties of nanocrystals are highly depending on their morphology, composition and structure. ...
The properties of nanocrystals are highly dependent on their morphology, composition, and structure....
The properties of nanocrystals are highly dependent on their morphology, composition and structure. ...
A general trend towards surface reconstructions which eliminate open facets in favour of close-packe...
Shape control is of key importance in utilizing the structure-property relationship of nanocrystals....
It has been generally accepted that crystal shrinkage during Ostwald ripening can be understood simp...
A newly developed SiN microhotplate allows specimens to be studied at temperatures up to 1000 K at a...
Most properties of nanocrystalline materials are shape-dependent, providing their exquisite tunabili...
Shape control is of key importance in utilizing the structure–property relationship of nanocrystals....
A newly developed SiN microhotplate allows specimens to be studied at temperatures up to 1000 K at a...
YesUnderstanding the effect of physical parameters (e.g., temperature) on crystallisation dynamics i...
Using transition path sampling computer simulations, we reveal the nucleation mechanism of a pressur...