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Current induced polycrystalline-to-crystalline transformation in vanadium dioxide nanowires

机译:二氧化钒纳米线中电流诱导的多晶至晶转变

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摘要

Vanadium dioxide (VO2) exhibits a reversible insulator-metal phase transition that is of significant interest in energy-efficient nanoelectronic and nanophotonic devices. In these applications, crystalline materials are usually preferred for their superior electrical transport characteristics as well as spatial homogeneity and low surface roughness over the device area for reduced scattering. Here, we show applied electrical currents can induce a permanent reconfiguration of polycrystalline VO2 nanowires into crystalline nanowires, resulting in a dramatically reduced hysteresis across the phase transition and reduced resistivity. Low currents below 3 mA were sufficient to cause the local temperature in the VO2 to reach about 1780 K to activate the irreversible polycrystalline-to-crystalline transformation. The crystallinity was confirmed by electron microscopy and diffraction analyses. This simple yet localized post-processing of insulator-metal phase transition materials may enable new methods of studying and fabricating nanoscale structures and devices formed from these materials.
机译:二氧化钒(VO2)表现出可逆的绝缘体-金属相变,这在节能的纳米电子和纳米光子器件中引起了极大的兴趣。在这些应用中,结晶材料通常是优选的,因为它们具有优异的电传输特性以及在器件区域上的空间均匀性和低表面粗糙度,以减少散射。在这里,我们显示出施加的电流会引起多晶VO2纳米线永久性重新配置为晶态纳米线,从而导致相变过程中的磁滞大大降低,电阻率降低。低于3 mA的低电流足以使VO2中的局部温度达到约1780 K,从而激活不可逆的多晶至晶转变。通过电子显微镜和衍射分析证实了结晶度。绝缘体-金属相变材料的这种简单而局部的后处理可能使研究和制造由这些材料形成的纳米级结构和装置的新方法成为可能。

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