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Structure and magnetic properties of CoNiP nanowire arrays embedded in AAO template

机译:嵌入AAO模板的CoNiP纳米线阵列的结构和磁性

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Ternary CoNiP nanowire (NW) arrays have been synthesized by electrochemical deposition inside the nanochannels of anodic aluminum oxide (AAO) template. The CoNiP NWs deposited at room temperature present soft magnetic properties, with both parallel and perpendicular coercivities less than 500 Oe. In contrast, as the electrolyte temperature (T_(elc)) increases from 323 to 343 K, the NWs exhibit hard magnetic properties with coercivities in the range of 1000-2500 Oe. This dramatic increase in coercivities can be attributed to the domain wall pinning that is related to the formation of Ni and Co nanocrystallites and the increase of P content. The parallel coercivity (i.e. the applied field perpendicular to the membrane surface) maximum as high as 2500 Oe with squareness ratio up to 0.8 is achieved at the electrolyte temperature of 328 K. It has been demonstrated that the parallel coercivity of CoNiP NWs can be tuned in a wide range of 200-2500 Oe by controlling the electrolyte temperature, providing an easy way to control magnetic properties and thereby for their integration with magnetic-micro-electromechanical systems (MEMS).
机译:三元CoNiP纳米线(NW)阵列是通过在阳极氧化铝(AAO)模板的纳米通道内进行电化学沉积而合成的。室温下沉积的CoNiP NW具有软磁特性,平行和垂直矫顽力均小于500 Oe。相反,随着电解质温度(T_(elc))从323 K升高到343 K,NW表现出具有1000-2500 Oe矫顽力的硬磁性能。矫顽力的急剧增加可以归因于与Ni和Co纳米微晶的形成以及P含量的增加有关的畴壁钉扎。在328 K的电解液温度下,平行矫顽力(即垂直于膜表面的施加场)最大可达2500 Oe,矩形比高达0.8。已证明CoNiP NW的平行矫顽力可以调节通过控制电解质温度,可在200-2500 Oe的宽范围内提供一种简便的方法来控制磁性能,从而将其与磁微机电系统(MEMS)集成在一起。

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