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A simple method for forming amorphous rare earth-transition metal alloy nanotube arrays

机译:一种形成非晶态稀土过渡金属合金纳米管阵列的简单方法

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摘要

Arrays of rare earth-transition metal alloy Co68Nd32 and Co96Sm4 nanotubes, with amorphous structures and outer diameters of ca. 270-330 nm and with lengths of over 30 mu m, have been fabricated for the first time by direct current electrodeposition with a mercury cathode via anodic aluminum oxide (AAO) template. The using of mercury cathode is a crucial condition for the growth of nanotubes and the co-reduction of Co2+, Nd3+ and Sm3+ in aqueous solution without any chemical modification of the pores of AAO, since the liquid mercury has characters of excellent conductivity and fluidity, high surface tension, high photoelectric work function. and high over-potential. A possible growth mechanism for the nanotubes is proposed. The as-prepared nanotube arrays display low coercivity and uniaxial magnetic anisotropy, and the easy magnetization direction is perpendicular to the nanotubes axes.
机译:稀土过渡金属合金Co68Nd32和Co96Sm4纳米管的阵列,其非晶态结构和外径约为。借助阳极氧化铝(AAO)模板与汞阴极进行直流电沉积,首次制造了270-330 nm,长度超过30μm的薄膜。汞阴极的使用是纳米管生长以及水溶液中Co2 +,Nd3 +和Sm3 +共还原而不对AAO的孔进行任何化学修饰的关键条件,因为液态汞具有优异的导电性和流动性,高表面张力,高光电功函。和高过电位。提出了纳米管可能的生长机理。所制备的纳米管阵列显示出低矫顽力和单轴磁各向异性,并且易磁化方向垂直于纳米管轴。

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