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Updated: Jan 15, 2026

Methods of Ex Situ and In Situ Investigations of Structural Transformations: The Case of Crystallization of Metallic Glasses
Published on: June 7, 2018
Quasi-Second-Order Martensitic Phase Transition by Flexomagnetic Coupling
Yechao Ling1,2, Chenyu Zhang3,4, Xiao Yu2
1School of Electronic and Information Engineering, Suzhou Polytechnic University, Suzhou 215104, China.
Abstract:
Heusler alloys, known for their first-order martensitic transformation, have found widespread applications in various technological fields. However, the intrinsic hysteresis associated with the phase transitions, combined with the narrow operating temperature range, limits their performance in smart metallic components and energy-efficient devices. Here, we introduce inhomogeneous strain gradients into the wrinkled Ni-Mn-Sn Heusler alloy thin film, facilitating a quasi-second-order martensitic transformation with dramatically reduced hysteresis (ΔThysteresis = 3.7 K). This flexomagnetic coupling not only enhances the ferromagnetic interaction but also broadens the operating temperature window (To = 260 K) for magnetic entropy change, offering substantial improvements in saturation magnetization (Ms = 71.3 emu/g) and effective refrigeration capacity (RCeff = 340.6 J·kg-1 under 50 kOe). Our findings offer a promising strategy for designing advanced phase-transition materials with applications in magnetic refrigeration and microscale smart systems.
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