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Spontaneous formation of spiral-like patterns with distinct periodic physical properties by confined electrodeposition of Co-In disks

机译:通过限制电沉积Co-In盘自发形成具有明显周期性物理特性的螺旋状图案

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Spatio-temporal patterns are ubiquitous in different areas of materials science and biological systems. However, typically the motifs in these types of systems present a random distribution with many possible different structures. Herein, we demonstrate that controlled spatio-temporal patterns, with reproducible spiral-like shapes, can be obtained by electrodeposition of Co-In alloys inside a confined circular geometry (i.e., in disks that are commensurate with the typical size of the spatio-temporal features). These patterns are mainly of compositional nature, i.e., with virtually no topographic features. Interestingly, the local changes in composition lead to a periodic modulation of the physical (electric, magnetic and mechanical) properties. Namely, the Co-rich areas show higher saturation magnetization and electrical conductivity and are mechanically harder than the In-rich ones. Thus, this work reveals that confined electrodeposition of this binary system constitutes an effective procedure to attain template-free magnetic, electric and mechanical surface patterning with specific and reproducible shapes.
机译:时空模式在材料科学和生物系统的不同领域无处不在。但是,通常,这些类型的系统中的主题呈现出具有许多可能的不同结构的随机分布。在此,我们证明,通过在有限的圆形几何形状内(即,在与时空的典型大小相称的圆盘中)电沉积Co-In合金,可以获得具有可再现的螺旋状形状的受控时空图案。特征)。这些图案主要具有组成性质,即实际上没有地形特征。有趣的是,成分的局部变化导致物理(电,磁和机械)特性的周期性调制。即,富Co区域显示出比In富区域更高的饱和磁化强度和电导率,并且在机械上更坚硬。因此,这项工作表明,该二元体系的受限电沉积构成了一种有效的程序,可以实现无模板的具有特定和可复制形状的磁,电和机械表面图案化。

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