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Temperature-dependent magnetic properties of Ni nanotubes synthesized by atomic layer deposition

机译:原子层沉积合成的纳米碳管的温度依赖性磁性

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Highly-ordered and conformal Ni nanotube arrays were prepared by combining atomic layer deposition (ALD) in a porous alumina matrix with a subsequent thermal reduction process. In order to obtain NiO tubes, one ALD NiCp2/O-3 cycle was repeated 2000 times. After the ALD process, the sample is reduced from NiO to metallic Ni under hydrogen atmosphere. Their magnetic properties such as coercivity and squareness have been determined in a vibrating sample magnetometer in the temperature range from 5-300 K for applied magnetic fields parallel and perpendicular to the nanotube axis. Ni nanotubes synthesized by ALD provide a promising opportunity for potential applications in spintronics, data storage and bio-applications.
机译:通过将多孔氧化铝基体中的原子层沉积(ALD)与随后的热还原工艺相结合,可以制备高度有序的共形Ni纳米管阵列。为了获得NiO管,将一个ALD NiCp2 / O-3循环重复2000次。 ALD过程之后,样品在氢气氛下从NiO还原为金属Ni。它们的磁性,例如矫顽力和矩形度已在振动样品磁力计中在5-300 K的温度范围内确定,用于平行于和垂直于纳米管轴的外加磁场。 ALD合成的镍纳米管为自旋电子学,数据存储和生物应用中的潜在应用提供了有希望的机会。

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