Meisenheimer P B, Kratofil T J, Heron J T
University of Michigan, Department of Materials Science and Engineering 2300 Hayward St, Ann Arbor, 48109, USA.
Sci Rep. 2017 Oct 17;7(1):13344. doi: 10.1038/s41598-017-13810-5.
Entropy-stabilized materials are stabilized by the configurational entropy of the constituents, rather than the enthalpy of formation of the compound. A unique benefit to entropy-stabilized materials is the increased solubility of elements, which opens a broad compositional space, with subsequent local chemical and structural disorder resulting from different atomic sizes and preferred coordinations of the constituents. Known entropy-stabilized oxides contain magnetically interesting constituents, however, the magnetic properties of the multi-component oxide have yet to be investigated. Here we examine the role of disorder and composition on the exchange anisotropy of permalloy/(MgCoNiCuZn)O heterostructures. Anisotropic magnetic exchange and the presence of a critical blocking temperature indicates that the magnetic order of the entropy-stabilized oxides considered here is antiferromagnetic. Changing the composition of the oxide tunes the disorder, exchange field and magnetic anisotropy. Here, we exploit this tunability to enhance the strength of the exchange field by a factor of 10x at low temperatures, when compared to a permalloy/CoO heterostructure. Significant deviations from the rule of mixtures are observed in the structural and magnetic parameters, indicating that the crystal is dominated by configurational entropy. Our results reveal that the unique characteristics of entropy-stabilized materials can be utilized and tailored to engineer magnetic functional phenomena in oxide thin films.
熵稳定材料是通过组分的构型熵而非化合物的形成焓来实现稳定的。熵稳定材料的一个独特优势是元素的溶解度增加,这开辟了广阔的成分空间,随后由于组分的不同原子尺寸和优先配位而导致局部化学和结构无序。已知的熵稳定氧化物包含具有磁学研究价值的组分,然而,这种多组分氧化物的磁性能尚未得到研究。在此,我们研究无序和成分对坡莫合金/(MgCoNiCuZn)O异质结构交换各向异性的作用。各向异性磁交换以及临界阻塞温度的存在表明,这里所考虑的熵稳定氧化物的磁序是反铁磁性的。改变氧化物的成分可调节无序度、交换场和磁各向异性。在此,与坡莫合金/CoO异质结构相比,我们利用这种可调性在低温下将交换场强度提高了10倍。在结构和磁参数中观察到与混合法则的显著偏差,表明该晶体由构型熵主导。我们的结果表明,熵稳定材料的独特特性可被利用和定制,以设计氧化物薄膜中的磁功能现象。