We report a systematic study of the mechanical response of methylammonium lead triiodide CH3NH3PbI3 nanowires by employing bending measurements using atomic force microscope on suspended wires over photo-lithographically patterned channels. Force-deflection curves measured at room temperature give a Young's modulus between 2 and 14 GPa. This broad range of values is attributed to the variations in the microcrystalline texture of halide perovskite nanowires. The mechanical response of a highly crystalline nanowire is linear with force and has a brittle character. The braking modulus of 48 ± 20 MPa corresponds to 100 μm of radius of curvature of the nanowires, rendering them much better structures for flexible devices than spin coated films. ...
Single crystalline tungsten nanowires were prepared from directionally solidified NiAl-W alloys by a...
The mechanical properties, including Young's modulus, the of effective bending modulus, and the...
Nanowires are an exciting class of novel materials that have potential applications in areas includi...
A new experimental method to characterize the mechanical properties of metallic nanowires is introdu...
The elastic properties of metallic and semiconducting nanowires were analyzed by different technique...
In this manuscript, we present the study of elastic properties of InP nanowires with help of scannin...
Nanomechanical properties of indium nanowires like structures fabricated on quartz substrate by tren...
Nanomechanical properties of indium nanowires like structures fabricated on quartz substrate by tren...
The first measurements of the tensile elastic modulus of polypyrrole nanotubes are presented. The na...
In this study we address the mechanical properties of Sb2S3 nanowires and determine their Young’s mo...
The elastic modulus of metallic (Ag and Pb) nanowires and polymer (polypyrrole, PPy) nanotubes was m...
The mechanical response of individual titanate nanowires (H2Ti3O7), synthesized in an upscaled produ...
In recent years, nanoscale materials (i.e., thin films, nanowires, nanotubes, etc.) have gained sign...
Although organic–inorganic hybrid perovskites have been extensively investigated for promising appli...
This paper provides a comprehensive review on the methodological development and technical applicati...
Single crystalline tungsten nanowires were prepared from directionally solidified NiAl-W alloys by a...
The mechanical properties, including Young's modulus, the of effective bending modulus, and the...
Nanowires are an exciting class of novel materials that have potential applications in areas includi...
A new experimental method to characterize the mechanical properties of metallic nanowires is introdu...
The elastic properties of metallic and semiconducting nanowires were analyzed by different technique...
In this manuscript, we present the study of elastic properties of InP nanowires with help of scannin...
Nanomechanical properties of indium nanowires like structures fabricated on quartz substrate by tren...
Nanomechanical properties of indium nanowires like structures fabricated on quartz substrate by tren...
The first measurements of the tensile elastic modulus of polypyrrole nanotubes are presented. The na...
In this study we address the mechanical properties of Sb2S3 nanowires and determine their Young’s mo...
The elastic modulus of metallic (Ag and Pb) nanowires and polymer (polypyrrole, PPy) nanotubes was m...
The mechanical response of individual titanate nanowires (H2Ti3O7), synthesized in an upscaled produ...
In recent years, nanoscale materials (i.e., thin films, nanowires, nanotubes, etc.) have gained sign...
Although organic–inorganic hybrid perovskites have been extensively investigated for promising appli...
This paper provides a comprehensive review on the methodological development and technical applicati...
Single crystalline tungsten nanowires were prepared from directionally solidified NiAl-W alloys by a...
The mechanical properties, including Young's modulus, the of effective bending modulus, and the...
Nanowires are an exciting class of novel materials that have potential applications in areas includi...