Dislocations have been identified to modify both the functional and mechanical properties of some ceramic materials. Succinct control of dislocation-based plasticity in ceramics will also demand knowledge about dislocation interaction with point defects. Here, we propose an experimental approach to modulate the dislocation-based plasticity in single-crystal SrTiO3 based on the concept of defect chemistry engineering, for example, by increasing the oxygen vacancy concentration via reduction treatment. With nanoindentation and bulk compression tests, we find that the dislocation-governed plasticity is significantly modified at the nano-/microscale, compared to the bulk scale. The increase in oxygen vacancy concentration after reduction treatm...
Dislocations in ceramic oxides are drawing increasing attention thanks to their promising properties...
Dislocation‐tuned functional properties such as electrical conductivity, thermal conductivity, and f...
Dislocation networks have been demonstrated to substantially enhance functional properties. As-sinte...
Dislocations have been identified to modify both the functional and mechanical properties of some ce...
Dislocations have been identified to modify both the functional and mechanical properties of some ce...
Incipient room-temperature plastic deformation in single-crystal SrTiO3 at the nanoscale and the mic...
Incipient room-temperature plastic deformation in single-crystal SrTiO 3 at the nanoscale and the mi...
Dislocation-based functionalities in inorganic ceramics and semiconductors are drawing increasing at...
Dislocation-based functionalities in inorganic ceramics and semiconductors are drawing increasing at...
Thermo-mechanical, functional, as well as processing related properties of ceramics are typically ta...
Dislocation-tuned functional properties such as electrical conductivity, thermal conductivity, and f...
Most oxide ceramics are known to be brittle macroscopically at room temperature with little or no di...
Dislocations in ceramic oxides are drawing increasing attention thanks to their promising properties...
Dislocation‐tuned functional properties such as electrical conductivity, thermal conductivity, and f...
Dislocation networks have been demonstrated to substantially enhance functional properties. As-sinte...
Dislocations have been identified to modify both the functional and mechanical properties of some ce...
Dislocations have been identified to modify both the functional and mechanical properties of some ce...
Incipient room-temperature plastic deformation in single-crystal SrTiO3 at the nanoscale and the mic...
Incipient room-temperature plastic deformation in single-crystal SrTiO 3 at the nanoscale and the mi...
Dislocation-based functionalities in inorganic ceramics and semiconductors are drawing increasing at...
Dislocation-based functionalities in inorganic ceramics and semiconductors are drawing increasing at...
Thermo-mechanical, functional, as well as processing related properties of ceramics are typically ta...
Dislocation-tuned functional properties such as electrical conductivity, thermal conductivity, and f...
Most oxide ceramics are known to be brittle macroscopically at room temperature with little or no di...
Dislocations in ceramic oxides are drawing increasing attention thanks to their promising properties...
Dislocation‐tuned functional properties such as electrical conductivity, thermal conductivity, and f...
Dislocation networks have been demonstrated to substantially enhance functional properties. As-sinte...