We use aberration-corrected transmission electron microscopy to track the real time atomic level torsional dynamics of subnanometer wires of MoS interconnecting monolayer regions of MoS2. An in situ heating holder is used inside the transmission electron microscope to raise the temperature of the sample to 400 °C to increase crystallization rates of the wires and reduce contamination effects. Frequent rotational twisting of the MoS wire is captured, demonstrating elastic torsional deformation of the MoS wires. We show that torsional rotations of the crystal structure of the MoS wires depend upon the specific atomic structure of the anchored sections of the suspended wire and the number of unit cells that make up the wire length. Elastic tor...
Electronic properties of two-dimensional (2D) MoS2 semiconductors can be modulated by introducing sp...
International audiencePlastic deformation of small metallic single crystals has focused a lot of att...
AbstractIn this review, we briefly introduce our in situ atomic-scale mechanical experimental techni...
We use aberration-corrected transmission electron microscopy to track the real time atomic level tor...
MoS<sub>2</sub> has been the focus of extensive research due to its potential applications. More rec...
Observation of van der Waals driven self-assembly of Mo6S 3I6 nanowires into a low-symmetry structur...
This article reviews in situ mechanical testing of crystalline nanowires in scanning and transmissio...
Complex stress states due to torsion lead to dislocation structures characteristic for the chosen to...
MoS2 is one of a class of layered, semiconducting materials known as the transition metal dichalcoge...
We study the detailed bond reconstructions that occur in S vacancies within monolayer MoS2 using a c...
Nanowires have been considered for a number of applications in nanometrology. In such a context, we ...
Understanding the growth behavior and morphology evolution of defects in 2D transition metal dichalc...
CNPQ - CONSELHO NACIONAL DE DESENVOLVIMENTO CIENTÍFICO E TECNOLÓGICOFAPESP - FUNDAÇÃO DE AMPARO À PE...
The ability to control nanoscale electronic properties by introducing macroscopic strain is of criti...
Studying the atomic structure of intrinsic defects in two-dimensional transition-metal dichalcogenid...
Electronic properties of two-dimensional (2D) MoS2 semiconductors can be modulated by introducing sp...
International audiencePlastic deformation of small metallic single crystals has focused a lot of att...
AbstractIn this review, we briefly introduce our in situ atomic-scale mechanical experimental techni...
We use aberration-corrected transmission electron microscopy to track the real time atomic level tor...
MoS<sub>2</sub> has been the focus of extensive research due to its potential applications. More rec...
Observation of van der Waals driven self-assembly of Mo6S 3I6 nanowires into a low-symmetry structur...
This article reviews in situ mechanical testing of crystalline nanowires in scanning and transmissio...
Complex stress states due to torsion lead to dislocation structures characteristic for the chosen to...
MoS2 is one of a class of layered, semiconducting materials known as the transition metal dichalcoge...
We study the detailed bond reconstructions that occur in S vacancies within monolayer MoS2 using a c...
Nanowires have been considered for a number of applications in nanometrology. In such a context, we ...
Understanding the growth behavior and morphology evolution of defects in 2D transition metal dichalc...
CNPQ - CONSELHO NACIONAL DE DESENVOLVIMENTO CIENTÍFICO E TECNOLÓGICOFAPESP - FUNDAÇÃO DE AMPARO À PE...
The ability to control nanoscale electronic properties by introducing macroscopic strain is of criti...
Studying the atomic structure of intrinsic defects in two-dimensional transition-metal dichalcogenid...
Electronic properties of two-dimensional (2D) MoS2 semiconductors can be modulated by introducing sp...
International audiencePlastic deformation of small metallic single crystals has focused a lot of att...
AbstractIn this review, we briefly introduce our in situ atomic-scale mechanical experimental techni...