Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controlling, the structure and properties of a wide variety of materials. However, because of the scale and highly dynamic nature of nuclei, the formation and early growth of nuclei are very difficult to observe. Here, we have employed single-walled carbon nanotubes as test tubes, and an ‘atomic injector’ coupled with aberration-corrected transmission electron microscopy, to enable in situ imaging of the initial steps of nucleation at the atomic scale. With three different metals we observed three main processes prior to heterogeneous nucleation: formation of crystal nuclei directly from an atomic seed (Fe), from a pre-existing amorphous nanocluster ...
Catalysis of chemical reactions by nanosized clusters of transition metals holds the key to the prov...
Catalysis of chemical reactions by nanosized clusters of transition metals holds the key to the prov...
Nucleation in atomic crystallization remains poorly understood, despite advances in classical nuclea...
Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controll...
Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controll...
Nucleation plays a critical role in many physical and biological phenomena that range from crystalli...
YesUnderstanding the effect of physical parameters (e.g., temperature) on crystallisation dynamics i...
The confined interior region of carbon nanotubes has proved to be an effective "nano-test-tube" to c...
The confined interior region of carbon nanotubes has proved to be an effective "nano-test-tube" to c...
Sub-nanometre Re clusters confined in a single-walled carbon nanotube are activated by the 80 keV el...
Nucleation plays a critical role in many physical and biological phenomena ranging from crystallizat...
When a solid crystalline material forms, such as a nanoparticle, this process starts with a nucleati...
Catalysis of chemical reactions by nanosized clusters of transition metals holds the key to the prov...
Catalysis of chemical reactions by nanosized clusters of transition metals holds the key to the prov...
Catalysis of chemical reactions by nanosized clusters of transition metals holds the key to the prov...
Catalysis of chemical reactions by nanosized clusters of transition metals holds the key to the prov...
Catalysis of chemical reactions by nanosized clusters of transition metals holds the key to the prov...
Nucleation in atomic crystallization remains poorly understood, despite advances in classical nuclea...
Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controll...
Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controll...
Nucleation plays a critical role in many physical and biological phenomena that range from crystalli...
YesUnderstanding the effect of physical parameters (e.g., temperature) on crystallisation dynamics i...
The confined interior region of carbon nanotubes has proved to be an effective "nano-test-tube" to c...
The confined interior region of carbon nanotubes has proved to be an effective "nano-test-tube" to c...
Sub-nanometre Re clusters confined in a single-walled carbon nanotube are activated by the 80 keV el...
Nucleation plays a critical role in many physical and biological phenomena ranging from crystallizat...
When a solid crystalline material forms, such as a nanoparticle, this process starts with a nucleati...
Catalysis of chemical reactions by nanosized clusters of transition metals holds the key to the prov...
Catalysis of chemical reactions by nanosized clusters of transition metals holds the key to the prov...
Catalysis of chemical reactions by nanosized clusters of transition metals holds the key to the prov...
Catalysis of chemical reactions by nanosized clusters of transition metals holds the key to the prov...
Catalysis of chemical reactions by nanosized clusters of transition metals holds the key to the prov...
Nucleation in atomic crystallization remains poorly understood, despite advances in classical nuclea...