The micromechanical fracture behavior of Si [100] was investigated as a function of temperature in the scanning electron microscope with a nanoindenter. A gradual increase in <i>K</i><sub>C</sub> was observed with temperature, in contrast to sharp transitions reported earlier for macro-Si. A transition in cracking mechanism via crack branching occurs at ∼300 °C accompanied by multiple load drops. This reveals that onset of small-scale plasticity plays an important role in the brittle-to-ductile transition of miniaturized Si
International audienceSingle-crystal silicon is extensively used in the semiconductor industry. Even...
This paper focuses on revealing specimen size and temperature effects on plasticity of nano-scale se...
Room-temperature fracture along the (111) plane of silicon is probed at the micron-scale using chevr...
Understanding the deformation mechanisms of materials at high temperature at the micro/nanoscale bec...
Materials at the micrometer and submicrometer scale exhibit mechanical properties that are substanti...
Understanding deformation mechanisms in silicon is critical for reliable design of miniaturized devi...
At small length scales, perhaps no material is more industrially important than silicon. It enabled ...
Silicon is an important material not only for semiconductor applications, but also for the developme...
Single-crystal silicon is extensively used in the semiconductor industry. Even though most of the st...
The micromechanisms of brittle-to-ductile transition (BDT) of cleavage fracture in Si single crystal...
De récents travaux consacrés à l’étude des propriétés des matériaux aux petites échelles ont soulign...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
Silicon is brittle at ambient temperature and pressure, but using micro-scale samples fabricated by ...
To determine the controlling mechanisms in the brittle-ductile transition (BDT) in silicon single cr...
International audienceAbstract Physical properties of nano-objects differ from what they are in bulk...
International audienceSingle-crystal silicon is extensively used in the semiconductor industry. Even...
This paper focuses on revealing specimen size and temperature effects on plasticity of nano-scale se...
Room-temperature fracture along the (111) plane of silicon is probed at the micron-scale using chevr...
Understanding the deformation mechanisms of materials at high temperature at the micro/nanoscale bec...
Materials at the micrometer and submicrometer scale exhibit mechanical properties that are substanti...
Understanding deformation mechanisms in silicon is critical for reliable design of miniaturized devi...
At small length scales, perhaps no material is more industrially important than silicon. It enabled ...
Silicon is an important material not only for semiconductor applications, but also for the developme...
Single-crystal silicon is extensively used in the semiconductor industry. Even though most of the st...
The micromechanisms of brittle-to-ductile transition (BDT) of cleavage fracture in Si single crystal...
De récents travaux consacrés à l’étude des propriétés des matériaux aux petites échelles ont soulign...
International audienceThe mechanical properties of materials usually depend on the size of the consi...
Silicon is brittle at ambient temperature and pressure, but using micro-scale samples fabricated by ...
To determine the controlling mechanisms in the brittle-ductile transition (BDT) in silicon single cr...
International audienceAbstract Physical properties of nano-objects differ from what they are in bulk...
International audienceSingle-crystal silicon is extensively used in the semiconductor industry. Even...
This paper focuses on revealing specimen size and temperature effects on plasticity of nano-scale se...
Room-temperature fracture along the (111) plane of silicon is probed at the micron-scale using chevr...