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The formation of vertically aligned biaxial tungsten nanorods using a novel shadowing growth technique

机译:使用新型阴影生长技术形成垂直排列的双轴钨纳米棒

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Biaxially textured tungsten nanorods (A15 crystal structure) have been grown by oblique angle DC magnetron sputtering using a novel rotation mode called 'two-step rotation'. In this mode, the substrate is given a fast rotation through 180 degrees at 90 rpm and this is followed by a rest period of 30 s. These nanorods are vertically aligned and have a [100] texture normal to the substrate along with preferential in-plane texture as shown by x-ray pole figure analysis. In contrast, the tungsten nanorods obtained without substrate rotation are slanted at an angle of similar to 45 degrees and have a [100] texture tilted 16 degrees with respect to the substrate normal. The flux is incident from two diametrically opposite points on the sample at an oblique angle, averaging out the growth into vertical columns that retain the in-plane texture. Scanning electron microscopy shows that the tungsten nanorods have a mixture of {211} and {421} crystal habits; these planes are both minimum surface energy planes for a cubic A15 crystal structure.
机译:双轴织构的钨纳米棒(A15晶体结构)已通过使用称为“两步旋转”的新型旋转模式通过斜角直流磁控溅射法生长。在此模式下,使基材以90 rpm的速度快速旋转180度,然后休息30 s。这些纳米棒垂直排列,并具有垂直于基板的[100]纹理以及优先的平面纹理,如X射线极图分析所示。相反,在没有基板旋转的情况下获得的钨纳米棒以类似于45度的角度倾斜,并且[100]纹理相对于基板法线倾斜了16度。磁通量以倾斜角度从样品上两个相对的点入射,使生长平均化为保留平面纹理的垂直列。扫描电子显微镜显示,钨纳米棒具有{211}和{421}晶体习性的混合物。这些平面都是立方A15晶体结构的最小表面能平面。

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