The characterization of nanomaterials under high strain rates is critical to understand their suitability for dynamic applications such as nanoresonators and nanoswitches. It is also of great theoretical importance to explore nanomechanics with dynamic and rate effects. Here, we report in situ scanning electron microscope (SEM) tensile testing of bicrystalline silver nanowires at strain rates up to 2/s, which is 2 orders of magnitude higher than previously reported in the literature. The experiments are enabled by a microelectromechanical system (MEMS) with fast response time. It was identified that the nanowire plastic deformation has a small activation volume (<10<i>b</i><sup>3</sup>), suggesting dislocation nucleation as the rate control...
Silver nanowires are promising components of flexible electronics such as interconnects and touch di...
Understanding the time-dependent mechanical behavior of nanomaterials such as nanowires is essential...
This article reviews in situ mechanical testing of crystalline nanowires in scanning and transmissio...
The mechanical properties and plastic deformation mechanisms of metal nanowires have been studied in...
One-dimensional nanomaterials have qualitatively different mechanical behavior comparing with their ...
Defect-scarce nanowires exhibit unique and often superior material properties compared to their bulk...
ABSTRACT: Metallic nanowires usually exhibit ultrahigh strength but low tensile ductility owing to t...
Defect-scarce nanowires exhibit unique and often superior material properties compared to their bulk...
ABSTRACT: Silver nanowires are promising components of flexible electronics such as interconnects an...
Metallic nanowires usually exhibit ultrahigh strength but low tensile ductility owing to their limit...
In this dissertation, the relationships between structure-mechanical properties-deformation mechanis...
This work deals with the experimental investigation of the mechanical properties of nanowires. Exper...
Pushing the limits of elastic deformation in nanowires subjected to stress is important for the desi...
ABSTRACT: Pushing the limits of elastic deformation in nanowires subjected to stress is important fo...
In this paper a fivefold twinning silver nanowire is mechanically tested in real time within a trans...
Silver nanowires are promising components of flexible electronics such as interconnects and touch di...
Understanding the time-dependent mechanical behavior of nanomaterials such as nanowires is essential...
This article reviews in situ mechanical testing of crystalline nanowires in scanning and transmissio...
The mechanical properties and plastic deformation mechanisms of metal nanowires have been studied in...
One-dimensional nanomaterials have qualitatively different mechanical behavior comparing with their ...
Defect-scarce nanowires exhibit unique and often superior material properties compared to their bulk...
ABSTRACT: Metallic nanowires usually exhibit ultrahigh strength but low tensile ductility owing to t...
Defect-scarce nanowires exhibit unique and often superior material properties compared to their bulk...
ABSTRACT: Silver nanowires are promising components of flexible electronics such as interconnects an...
Metallic nanowires usually exhibit ultrahigh strength but low tensile ductility owing to their limit...
In this dissertation, the relationships between structure-mechanical properties-deformation mechanis...
This work deals with the experimental investigation of the mechanical properties of nanowires. Exper...
Pushing the limits of elastic deformation in nanowires subjected to stress is important for the desi...
ABSTRACT: Pushing the limits of elastic deformation in nanowires subjected to stress is important fo...
In this paper a fivefold twinning silver nanowire is mechanically tested in real time within a trans...
Silver nanowires are promising components of flexible electronics such as interconnects and touch di...
Understanding the time-dependent mechanical behavior of nanomaterials such as nanowires is essential...
This article reviews in situ mechanical testing of crystalline nanowires in scanning and transmissio...