Department of Physics, University of South Florida, Tampa, FL 33620, USA.
Nanotechnology. 2013 Dec 20;24(50):505712. doi: 10.1088/0957-4484/24/50/505712. Epub 2013 Nov 27.
We report the first observation of inverse magnetocaloric effect (IMCE) in hydrothermally synthesized single crystalline La0.5Sr0.5MnO3 nanowires. The core of the nanowires is phase separated with the development of double exchange driven ferromagnetism (FM) in the antiferromagnetic (AFM) matrix, whereas the surface is found to be composed of disordered magnetic spins. The FM phase scales with the effective magnetic anisotropy, which is directly probed by transverse susceptibility experiments. The surface exhibits a glassy behavior and undergoes spin freezing, which manifests as a positive peak (T(L) ~ 42 K) in the magnetic entropy change (-ΔS(M)) curves, thereby stabilizing the re-entrance of the conventional magnetocaloric effect. Precisely at T(L), the nanowires develop the exchange bias (EB) effect. Our results conclusively demonstrate that the mere coexistence of FM and AFM phases along with a disordered surface below their Néel temperature (T(N) ~ 210 K) does not trigger EB, but this develops only below the surface spin freezing temperature.
我们首次观察到水热合成单晶 La0.5Sr0.5MnO3 纳米线中的反磁热效应 (IMCE)。纳米线的核心发生了相分离,在反铁磁 (AFM) 基体中发展出双交换驱动的铁磁 (FM),而表面则发现由无序磁自旋组成。FM 相的大小与有效磁各向异性有关,这可通过横向磁化率实验直接探测到。表面表现出玻璃化行为并经历自旋冻结,这在磁熵变化 (-ΔS(M)) 曲线中表现为正峰 (T(L)42 K),从而稳定了传统磁热效应的再进入。恰好在 T(L) 处,纳米线出现了交换偏置 (EB) 效应。我们的结果明确表明,仅仅在其奈尔温度 (T(N)210 K) 以下存在 FM 和 AFM 相以及无序表面,并不会引发 EB,但这种情况仅在表面自旋冻结温度以下才会出现。