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VO2(B) nanorods: solvothermal preparation, electrical properties, and conversion to rutile VO2 and V2O3

机译:VO2(B)纳米棒:溶剂热制备,电性能以及转化为金红石VO2和V2O3

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摘要

The solvothermal reduction of V2O5 by formaldehyde or isopropanol yields nanorods of the metastable, monoclinic VO2(B) phase. The structural transition in VO2(B), which occurs near room temperature, has been monitored using electrical resistivity measurements, performed both on pressed pellets of the nanorods as well as on nanorods dispersed on patterned contacts. A sudden, 105 increase in the electrical resistivity upon cooling below 290 K is seen in measurements on VO2(B) samples. Such a transition in the electrical resistivity has not previously been reported in this material. The transition is reminiscent of the metal-to-insulator transition observed in the case of pressed pellets of polycrystalline rutile VO2 upon cooling below 340 K. The metastable VO2(B) nanorods are converted to rutile VO2 by heating in argon, and to corundum V2O3 by reducing in 5%H2:95%N2. In both transformations, the structural integrity of the nanorods is compromised, with large, dense, rutile VO2 crystallites and less well-defined nanorods of V2O3 being formed.
机译:甲醛或异丙醇对溶剂中的V2O5进行溶剂热还原,生成亚稳单斜VO2(B)相的纳米棒。 VO2(B)中发生在室温附近的结构转变已使用电阻率测量进行了监测,该测量既对纳米棒的压制颗粒进行,也对分散在图案化触点上的纳米棒进行。在VO2(B)样品的测量中,冷却到290 K以下时,电阻率突然增加了105。这种材料以前没有报道过电阻率的这种转变。该转变使人联想到在冷却至340 K以下时,在压制多晶金红石VO2球粒的情况下观察到的金属到绝缘体的转变。亚稳VO2(B)纳米棒通过在氩气中加热而转化为金红石VO2,并转变为刚玉V2O3通过减少5%H2:95%N2在这两个转变中,纳米棒的结构完整性受到损害,形成了大而致密的金红石型VO2晶体,并形成了清晰度不高的V2O3纳米棒。

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