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Kinetic Engineering of Wurtzite and Zinc-Blende AlSb Shells on InAs Nanowires

机译:南京国南京国紫外线和锌 - 闪光硅藻土的动力学工程

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Using AlSb as the model system, we demonstrate that kinetic limitations can lead to the preferential growth of wurtzite (WZ) AlSb shells rather than the thermodynamically stable zinc-blende (ZB) AlSb and that the WZ and ZB relative thickness can be tuned by a careful control of the deposition parameters. We report selective heteroepitaxial radial growth of AlSb deposited by metal-organic vapor phase epitaxy (MOVPE) on InAs nanowire core templates with engineered lengths of axial WZ and ZB segments. AlSb shell thickness, crystal phase, nanostructure, and composition are investigated as a function of the shell growth temperature, T-s, using scanning electron microscopy, transmission electron microscopy, electron tomography, and energy-dispersive X-ray spectroscopy. We find that ZB- and WZ-structured AlSb shells grow heteroepitaxially around the ZB and WZ segments of the InAs core, respectively. Surprisingly, at 390 T-s, 450 degrees C, the WZ-AlSb shells are thicker than the ZB-AlSb shells, and their thickness increases with decreasing T-s. In comparison, the ZB-AlSb shell thicknesses increase slightly with increasing T-s. We find that the increased thickness of the WZ-AISb shells is due to the formation and enhanced deposition on {11 (2) over bar0} facets rather than on the more commonly grown {10 (1) over bar0} sidewall facets. Overall, these results, which are in direct contrast with previous reports suggesting that heteroepitaxial radial growth of III-antimonides is always favored on the ZB-structure facets, indicate that the growth of WZ-AISb is preferred over the thermodynamically stable ZB-AlSb at lower growth temperatures. We attribute this behavior to kinetic limitations of MOVPE of AlSb on ZB and WZ phases of InAs.
机译:使用的AlSb作为模型系统,我们证明了动力学限制可导致纤锌矿(WZ)的优先生长的AlSb壳而不是热力学稳定的闪锌矿型(ZB)的AlSb和该WZ和ZB相对厚度可以通过被调谐沉积参数的仔细控制。我们报告的AlSb的选择性的异质外延径向生长沉积通过金属有机气相外延(MOVPE)上的InAs纳米线核心模板与轴向WZ和ZB段的工程改造的长度。的AlSb壳厚度,晶相,纳米结构,和组合物进行了研究作为壳生长温度,T-s的函数,使用扫描电子显微镜,透射电子显微镜,电子断层扫描,和能量色散型X射线光谱。我们发现,ZB-和WZ结构的AlSb壳分别增长异质围绕InAs核的ZB和WZ段。出人意料的是,在390< T-S,LT; 450度C时,WZ-的AlSb壳比ZB-的AlSb壳厚,并以减少T-S它们的厚度增加而增加。相比较而言,ZB-的AlSb壳厚度的增加T-S略有增加。我们发现,WZ-AlSb基壳的厚度增加是由于{超过BAR0 11(2)}的形成和增强沉积上小面,而不是在更普遍生长{10(1)在BAR0}侧壁面。总的来说,这些结果,这是在与先前的报道表明III-锑的异质外延的径向生长总是青睐于ZB-结构面直接的对比,表明WZ-AlSb基的生长优于热力学稳定ZB-的AlSb在降低生长温度。我们认为这种行为上的InAs的ZB和WZ阶段的AlSb的MOVPE的动力学限制。

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