Zero thermal expansion (ZTE) composites are typically designed by combining positive thermal expansion (PTE) with negative thermal expansion (NTE) materials acting as compensators and have many diverse applications, including in high-precision instrumentation and biomedical devices. La(Fe1–x,Six)13-based compounds display several remarkable properties, such as giant magnetocaloric effect and very large NTE at room temperature. Both are linked via strong magnetovolume coupling, which leads to sharp magnetic and volume changes occurring simultaneously across first-order phase transitions; the abrupt nature of these changes makes them unsuitable as thermal expansion compensators. To make these materials more useful practically, the mechanisms ...
Metallic materials that exhibit negligible thermal expansion or zero thermal expansion (ZTE) have gr...
Fe-doped MnNiGe alloys were successfully synthesized by solid-state reaction. Giant negative thermal...
The rare physical property of zero thermal expansion (ZTE) is intriguing because neither expansion n...
Cubic La(Fe,Si)<sub>13</sub>-based compounds have been recently developed as promising negative the...
La(Fe, Si)<sub>13</sub>-based compounds are well-known magnetocaloric materials, which show a prono...
Materials with tunable negative thermal expansion (NTE) are highly demanded in various functional de...
Materials with zero thermal expansion (ZTE) or precisely tailored thermal expansion are in urgent de...
Negative thermal expansion (NTE) behaviors in the materials with giant magnetocaloric effects (MCE) ...
Experiments have been performed to enhance negative thermal expansion (NTE) in the La(Fe,Co,Si)<sub...
The controllable isotropic thermal expansion with a broad coefficient of thermal expansion (CTE) win...
To meet strong demands for the control of thermal expansion necessary because of the advanced develo...
Negative thermal expansion (NTE) upon heating is an unusual property but is observed in many materia...
Negative thermal expansion (NTE) material as a compensator is very important for accurately controll...
Negative thermal expansion (NTE) materials have become a rapidly growing area of research over the p...
Providing a suitable contact interface, where a high conductivity material with a desirable coeffici...
Metallic materials that exhibit negligible thermal expansion or zero thermal expansion (ZTE) have gr...
Fe-doped MnNiGe alloys were successfully synthesized by solid-state reaction. Giant negative thermal...
The rare physical property of zero thermal expansion (ZTE) is intriguing because neither expansion n...
Cubic La(Fe,Si)<sub>13</sub>-based compounds have been recently developed as promising negative the...
La(Fe, Si)<sub>13</sub>-based compounds are well-known magnetocaloric materials, which show a prono...
Materials with tunable negative thermal expansion (NTE) are highly demanded in various functional de...
Materials with zero thermal expansion (ZTE) or precisely tailored thermal expansion are in urgent de...
Negative thermal expansion (NTE) behaviors in the materials with giant magnetocaloric effects (MCE) ...
Experiments have been performed to enhance negative thermal expansion (NTE) in the La(Fe,Co,Si)<sub...
The controllable isotropic thermal expansion with a broad coefficient of thermal expansion (CTE) win...
To meet strong demands for the control of thermal expansion necessary because of the advanced develo...
Negative thermal expansion (NTE) upon heating is an unusual property but is observed in many materia...
Negative thermal expansion (NTE) material as a compensator is very important for accurately controll...
Negative thermal expansion (NTE) materials have become a rapidly growing area of research over the p...
Providing a suitable contact interface, where a high conductivity material with a desirable coeffici...
Metallic materials that exhibit negligible thermal expansion or zero thermal expansion (ZTE) have gr...
Fe-doped MnNiGe alloys were successfully synthesized by solid-state reaction. Giant negative thermal...
The rare physical property of zero thermal expansion (ZTE) is intriguing because neither expansion n...