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Large Magnetoelectric Effects in Electrodeposited Nanoporous Microdisks Driven by Effective Surface Charging and Magneto-Ionics

机译:通过有效表面充电和磁离子驱动的电沉积纳米多孔微小微小磁电效应

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摘要

A synergetic approach to enhance magneto electric effects (i.e., control of magnetism with voltage) and improve energy efficiency in magnetically actuated devices is presented. The investigated material consists of an ordered array of Co-Pt microdisks, in which nanoporosity and partial oxidation are introduced during the synthetic procedure to synergetically boost the effects of electric field. The microdisks are grown by electrodeposition from an electrolyte containing an amphiphilic polymeric surfactant. The bath formulation is designed to favor the incorporation of oxygen in the form of cobalt oxide. A pronounced reduction of coercivity (88%) and a remarkable increase of Kerr signal amplitude (60%) are observed at room temperature upon subjecting the microdisks to negative voltages through an electrical double layer. These large voltage-induced changes in the magnetic properties of the microdisks are due to (i) the high surface-area-to-volume ratio with ultranarrow pore walls (sub-10 nm) that promote enhanced electric charge accumulation and (ii) magneto-ionic effects, where voltage-driven O2- migration promotes a partial reduction of CoO to Co at room temperature. This simple and versatile procedure to fabricate patterned "nano-in-micro" magnetic motifs with adjustable voltage-driven magnetic properties is very appealing for energy-efficient magnetic recording systems and other magnetoelectronic devices.
机译:提高了增强磁效电的协同方法(即,用电压控制磁力),提高磁致动装置中的能量效率。所研究的材料包括有序的CO-PT微小微小阵列,其中在合成过程中引入纳米孔隙度和部分氧化以协调促进电场的影响。通过电解质从含两亲聚合物表面活性剂的电解质的电沉积来生长微小微小。浴制剂设计用于以氧化钴形式的氧气掺入氧气。在室温下在室温下在通过电双层经历微小电压时,在室温下观察到矫顽力(88%)和克尔信号幅度(60%)的显着增加。这些大电压引起的微小磁性的变化是由于(i)与超轴孔壁(Sub-10nm)的高表面积到体积比,可促进增强的电荷累积和(ii)磁电在室温下促进电压驱动的O2-迁移的影响,其中电压驱动的O2迁移在室温下促进COO的部分减少。这种简单且多功能的程序,用于制造具有可调节电压驱动的磁性性能的图案化的“纳米微型”磁性电泳是非常有吸引力的,用于节能磁记录系统和其他磁电子器件。

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