论文标题
波纹螺旋膜中的外交,去角质和应变诱导的磁性
Epitaxy, exfoliation, and strain-induced magnetism in rippled Heusler membranes
论文作者
论文摘要
功能材料的单晶膜可以通过极端应变状态调整性能;但是,用于产生膜的常规路线需要使用牺牲层和化学蚀刻剂,这既可以损坏膜并限制使其超薄的能力。在这里,我们证明了Cubic Heusler化合物GDPTSB在石墨烯终止的Al $ _2 $ o $ $ _3 $底物上的外延生长。尽管存在石墨烯中间层,但Heusler膜仍对基础蓝宝石具有外延注册,如X射线衍射,反射高能电子衍射和透射电子显微镜所揭示的那样。石墨烯的弱范德华相互作用可实现机械剥落以产生独立的GDPTSB膜,当转移到柔性聚合物手柄上时,它们会形成波纹。尽管未经培训的GDPTSB是抗磁磁性的,但在室温下的膜上测量显示了自发的磁矩,饱和磁化值为5.2 BOHR MAGNETON每GD。第一原理计算表明,与均相应变的耦合太小,无法诱导铁磁性,这表明菌株梯度的主要作用。我们的膜提供了一个新型平台,用于通过应变(PiezomagnetixM和MagnetStriction)和应变梯度(Flexomagnetism)调整金属间化合物的磁性特性。
Single-crystalline membranes of functional materials enable the tuning of properties via extreme strain states; however, conventional routes for producing membranes require the use of sacrificial layers and chemical etchants, which can both damage the membrane and limit the ability to make them ultrathin. Here we demonstrate the epitaxial growth of the cubic Heusler compound GdPtSb on graphene-terminated Al$_2$O$_3$ substrates. Despite the presence of the graphene interlayer, the Heusler films have epitaxial registry to the underlying sapphire, as revealed by x-ray diffraction, reflection high energy electron diffraction, and transmission electron microscopy. The weak Van der Waals interactions of graphene enable mechanical exfoliation to yield free-standing GdPtSb membranes, which form ripples when transferred to a flexible polymer handle. Whereas unstrained GdPtSb is antiferromagnetic, measurements on rippled membranes show a spontaneous magnetic moment at room temperature, with a saturation magnetization of 5.2 bohr magneton per Gd. First-principles calculations show that the coupling to homogeneous strain is too small to induce ferromagnetism, suggesting a dominant role for strain gradients. Our membranes provide a novel platform for tuning the magnetic properties of intermetallic compounds via strain (piezomagnetixm and magnetostriction) and strain gradients (flexomagnetism).