Negative thermal expansion (NTE) is an intriguing property, which is generally triggered by a single NTE mechanism. In this work, an enhanced NTE (αv = −32.9 × 10−6 K−1, ΔT = 175 K) is achieved in YbMn2Ge2 intermetallic compound to be caused by a dual effect of magnetism and valence transition. In YbMn2Ge2, the Mn sublattice that forms the antiferromagnetic structure induces the magnetovolume effect, which contributes to the NTE below the Néel temperature (525 K). Concomitantly, the valence state of Yb increases from 2.40 to 2.82 in the temperature range of 300–700 K, which simultaneously causes the contraction of the unit cell volume due to smaller volume of Yb3+ than that of Yb2+. As a result, such combined effect gives rise to an enhance...
MnCoGe-based compounds undergo a giant negative thermal expansion (NTE) during the martensitic struc...
The Tb1−xYxMn2Ge2 series (x = 0, 0.1, 0.2) compounds are found to exhibit two magnetic phase transit...
Interest in the strongly correlated electron system YbAl 3 has been recently renewed by the observat...
AbstractNegative thermal expansion (NTE) is an intriguing property, which is generally triggered by ...
The thermal lattice expansion in the superconducting Mg1-xAlxB2 system (x=0, 0.13 and 0.59) has been...
Giant negative thermal expansion is achieved in antiperovskite manganese nitrides when the sharp vol...
Negative thermal expansion (NTE) material as a compensator is very important for accurately controll...
Compounds that exhibit the unique behavior of negative thermal expansion (NTE) - the physical proper...
Negative thermal expansion (NTE) behaviors in the materials with giant magnetocaloric effects (MCE) ...
Dans le système YbMn6Ge6-xSnx, l’ytterbium de valence intermédiaire (v.i.) s’ordonne magnétiquement ...
Fe-doped MnNiGe alloys were successfully synthesized by solid-state reaction. Giant negative thermal...
Materials with zero thermal expansion (ZTE) or precisely tailored thermal expansion are in urgent de...
In the YbMn6Ge6-xSnx system, intermediate valent Yb magnetically orders at an astonishingly high tem...
The thermal lattice expansion in the superconducting Mg(1-x)Al(x)B(2) system (x = 0, 0.13, and 0.59)...
Équipe 102 : Surfaces et Spectroscopies ; Équipe 103 : Composés intermétalliques et matériaux hybrid...
MnCoGe-based compounds undergo a giant negative thermal expansion (NTE) during the martensitic struc...
The Tb1−xYxMn2Ge2 series (x = 0, 0.1, 0.2) compounds are found to exhibit two magnetic phase transit...
Interest in the strongly correlated electron system YbAl 3 has been recently renewed by the observat...
AbstractNegative thermal expansion (NTE) is an intriguing property, which is generally triggered by ...
The thermal lattice expansion in the superconducting Mg1-xAlxB2 system (x=0, 0.13 and 0.59) has been...
Giant negative thermal expansion is achieved in antiperovskite manganese nitrides when the sharp vol...
Negative thermal expansion (NTE) material as a compensator is very important for accurately controll...
Compounds that exhibit the unique behavior of negative thermal expansion (NTE) - the physical proper...
Negative thermal expansion (NTE) behaviors in the materials with giant magnetocaloric effects (MCE) ...
Dans le système YbMn6Ge6-xSnx, l’ytterbium de valence intermédiaire (v.i.) s’ordonne magnétiquement ...
Fe-doped MnNiGe alloys were successfully synthesized by solid-state reaction. Giant negative thermal...
Materials with zero thermal expansion (ZTE) or precisely tailored thermal expansion are in urgent de...
In the YbMn6Ge6-xSnx system, intermediate valent Yb magnetically orders at an astonishingly high tem...
The thermal lattice expansion in the superconducting Mg(1-x)Al(x)B(2) system (x = 0, 0.13, and 0.59)...
Équipe 102 : Surfaces et Spectroscopies ; Équipe 103 : Composés intermétalliques et matériaux hybrid...
MnCoGe-based compounds undergo a giant negative thermal expansion (NTE) during the martensitic struc...
The Tb1−xYxMn2Ge2 series (x = 0, 0.1, 0.2) compounds are found to exhibit two magnetic phase transit...
Interest in the strongly correlated electron system YbAl 3 has been recently renewed by the observat...