Dislocation‐tuned functional properties such as electrical conductivity, thermal conductivity, and ferroelectric properties in oxides are attracting increasing research interest. A prerequisite for harvesting these functional properties in oxides requires successful introduction and control of dislocation density and arrangement without forming cracks, which is a great challenge due to their brittle nature. Here, we report a simple method to mechanically tailor the dislocation densities in single‐crystal perovskite SrTiO₃. By using a millimeter‐sized Brinell indenter, dislocation densities from ∼10¹⁰ to ∼10¹³ m⁻² are achieved by increasing the number of indenting cycles. Depending on tip radius and indenting load, large and crack‐free plast...
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...
In this communication, we demonstrate a simple but powerful method to engineer dislocations into lar...
Dislocation-tuned functional properties such as electrical conductivity, thermal conductivity, and f...
Dislocation‐tuned functional properties such as electrical conductivity, thermal conductivity, and f...
Dislocation-based functionalities in inorganic ceramics and semiconductors are drawing increasing at...
Dislocations have been identified to modify both the functional and mechanical properties of some ce...
Recently, several creative processing techniques yielded thermoelectrics with reduced thermal conduc...
Dislocation-based functionalities in inorganic ceramics and semiconductors are drawing increasing at...
Understanding the irreversible deformation (dislocation activation and crack formation) of function...
Thermo-mechanical, functional, as well as processing related properties of ceramics are typically ta...
Dislocation networks have been demonstrated to substantially enhance functional properties. As-sinte...
Dislocations in ceramic oxides are drawing increasing attention thanks to their promising properties...
This study evaluates the change of flow stress as related to dislocation density in SrTiO3 single cr...
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...
In this communication, we demonstrate a simple but powerful method to engineer dislocations into lar...
Dislocation-tuned functional properties such as electrical conductivity, thermal conductivity, and f...
Dislocation‐tuned functional properties such as electrical conductivity, thermal conductivity, and f...
Dislocation-based functionalities in inorganic ceramics and semiconductors are drawing increasing at...
Dislocations have been identified to modify both the functional and mechanical properties of some ce...
Recently, several creative processing techniques yielded thermoelectrics with reduced thermal conduc...
Dislocation-based functionalities in inorganic ceramics and semiconductors are drawing increasing at...
Understanding the irreversible deformation (dislocation activation and crack formation) of function...
Thermo-mechanical, functional, as well as processing related properties of ceramics are typically ta...
Dislocation networks have been demonstrated to substantially enhance functional properties. As-sinte...
Dislocations in ceramic oxides are drawing increasing attention thanks to their promising properties...
This study evaluates the change of flow stress as related to dislocation density in SrTiO3 single cr...
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...
In this communication, we demonstrate a simple but powerful method to engineer dislocations into lar...