The confined interior region of carbon nanotubes has proved to be an effective "nano-test-tube" to conduct chemical reactions in a restricted volume. It also benefits from being thin and relatively transparent to electrons, enabling structural characterization using high-resolution transmission electron microscopy. This permits real-time monitoring of chemical reactions with atomic resolution. Here, we have studied the dynamics of single Pr atoms released from Pr(2)@C(72) metallofullerenes. We show that the Pr atoms form small nanoclusters that subsequently coalesce to ordered, stable nanocrystals within the confines of a carbon nanotube. This process has been tracked in situ with atomic-resolution using low-voltage aberration-corrected hig...
The coalescence of single-walled nanotubes is studied in situ under electron irradiation at high tem...
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...
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...
Subnanometer Re clusters confined in a single-walled carbon nanotube are activated by the 80 keV ele...
Subnanometer Re clusters confined in a single-walled carbon nanotube are activated by the 80 keV ele...
Subnanometer Re clusters confined in a single-walled carbon nanotube are activated by the 80 keV ele...
The structural chemistry of nanoscale materials encapsulated within single-walled carbon nanotubes (...
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...
We present atomic-scale, video-rate environmental transmission electron microscopy and in situ time-...
We use in situ low-voltage aberration corrected high resolution transmission electron microscopy wit...
Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controll...
Figure Presented Demolition with dysprosium: Aberration-corrected transmission electron microscopy a...
The coalescence of single-walled nanotubes is studied in situ under electron irradiation at high tem...
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...
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...
Subnanometer Re clusters confined in a single-walled carbon nanotube are activated by the 80 keV ele...
Subnanometer Re clusters confined in a single-walled carbon nanotube are activated by the 80 keV ele...
Subnanometer Re clusters confined in a single-walled carbon nanotube are activated by the 80 keV ele...
The structural chemistry of nanoscale materials encapsulated within single-walled carbon nanotubes (...
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...
We present atomic-scale, video-rate environmental transmission electron microscopy and in situ time-...
We use in situ low-voltage aberration corrected high resolution transmission electron microscopy wit...
Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controll...
Figure Presented Demolition with dysprosium: Aberration-corrected transmission electron microscopy a...
The coalescence of single-walled nanotubes is studied in situ under electron irradiation at high tem...
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...