Nanofluidics involves the study of fluid transport in nanometer-scale structures. We report the direct observation of fluid dynamics in a single zinc oxide nanotube with the high spatial and temporal resolution of four-dimensional (4D) electron microscopy. The nanotube is filled with metallic lead, which we melt in situ with a temperature jump induced by a heating laser pulse. We then use a short electron pulse to create an image of the ensuing dynamics of the hot liquid. Single-shot images elucidate the mechanism of irreversible processes, whereas stroboscopic diffraction patterns provide the heating and cooling rates of single nanotubes. The temporal changes of the images enable studies of the viscous friction involved in the flow of liqu...
A transmission electron microscope (TEM) is much more than just a tool for imaging the static state ...
We report the anisotropic atomic expansion dynamics of multi-walled carbon nanotubes, using 4D ele...
The hollow core of a carbon nanotube (CNT) provides a unique opportunity to explore the physics, che...
Nanofluidics involves the study of fluid transport in nanometer-scale structures. We report the dire...
Aqueous multiphase fluids trapped in closed multiwall carbon nanotubes are visualized with high reso...
A hydrothermal method of catalytic nanotube synthesis has been shown to produce high-aspect-ratio, m...
In real time and space, four-dimensional electron microscopy (4D EM) has enabled observation of tran...
In situ imaging using (scanning) transmission electron microscopy has proven to be an extremely impo...
The dynamic response-as caused by different means of thermal stimulation or pressurization-of aqueou...
Hydrothermal multiwall closed carbon nanotubes are shown to contain an encapsulated multiphase aqueo...
The thermal contraction/expansion of an isolated liquid volume inside a closed-end carbon nanotube i...
Electron tomography provides three-dimensional (3D) imaging of noncrystalline and crystalline equili...
We use in situ low-voltage aberration corrected high resolution transmission electron microscopy wit...
ZnO nanorods with Sn core regions grown by a thermal evaporation–deposition method from a mixture of...
With ultrafast electron microscopy (UEM), we report observation of the nanoscopic crystallization of...
A transmission electron microscope (TEM) is much more than just a tool for imaging the static state ...
We report the anisotropic atomic expansion dynamics of multi-walled carbon nanotubes, using 4D ele...
The hollow core of a carbon nanotube (CNT) provides a unique opportunity to explore the physics, che...
Nanofluidics involves the study of fluid transport in nanometer-scale structures. We report the dire...
Aqueous multiphase fluids trapped in closed multiwall carbon nanotubes are visualized with high reso...
A hydrothermal method of catalytic nanotube synthesis has been shown to produce high-aspect-ratio, m...
In real time and space, four-dimensional electron microscopy (4D EM) has enabled observation of tran...
In situ imaging using (scanning) transmission electron microscopy has proven to be an extremely impo...
The dynamic response-as caused by different means of thermal stimulation or pressurization-of aqueou...
Hydrothermal multiwall closed carbon nanotubes are shown to contain an encapsulated multiphase aqueo...
The thermal contraction/expansion of an isolated liquid volume inside a closed-end carbon nanotube i...
Electron tomography provides three-dimensional (3D) imaging of noncrystalline and crystalline equili...
We use in situ low-voltage aberration corrected high resolution transmission electron microscopy wit...
ZnO nanorods with Sn core regions grown by a thermal evaporation–deposition method from a mixture of...
With ultrafast electron microscopy (UEM), we report observation of the nanoscopic crystallization of...
A transmission electron microscope (TEM) is much more than just a tool for imaging the static state ...
We report the anisotropic atomic expansion dynamics of multi-walled carbon nanotubes, using 4D ele...
The hollow core of a carbon nanotube (CNT) provides a unique opportunity to explore the physics, che...