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Novel electrical transport properties of native Fe-Nb oxide layers leading to unilateral conductivity of a refractory metallic glass

机译:天然Fe-Nb氧化物层的新型电传输特性导致难熔金属玻璃的单边导电性

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摘要

Fe-based metallic glasses (also called amorphous alloys) are known to have high hardness and high wear resistance. Here we study and present a Fe-Nb amorphous material with an unusual type of electrical conductivity behavior. The electrical transport properties of Fe-Nb oxide layers were studied by measuring local current-voltage characteristics by the atomic-force microscopy technique. At certain voltage levels the samples containing native oxides showed clearly asymmetrical conductivity relative to polarity of the applied potential. Fe-Nb metallic glassy surface oxide film growth process was monitored at ambient conditions. The growth rate keeps constant during the initial 2.5 hours. After that the growth rate drastically decreases and becomes almost zero while the final oxide thickness is 1.0–1.5 nm. The Fe-Nb film sample annealed for 15 minutes at 300 °C demonstrates several times larger oxide thickness and becomes an insulator. X-ray photoelectron spectroscopy was used to characterize the oxidation states in the surface amorphous oxides. This material can be readily applied as inexpensive nanoscale tunnel diode operating at the commonly utilized voltage of ±5 V.
机译:已知铁基金属玻璃(也称为非晶合金)具有高硬度和高耐磨性。在这里,我们研究并提出了一种具有非常规导电性能的Fe-Nb非晶态材料。通过原子力显微镜技术测量局部电流-电压特性,研究了Fe-Nb氧化物层的电传输性质。在某些电压水平下,含有天然氧化物的样品相对于所施加电势的极性显示出明显不对称的电导率。在环境条件下监测Fe-Nb金属玻璃表面氧化物膜的生长过程。在最初的2.5小时内,增长率保持恒定。之后,生长速度急剧下降,几乎变为零,而最终氧化物厚度为1.0–1.5 nm。在300°C下退火15分钟的Fe-Nb薄膜样品显示出几倍的氧化物厚度,并成为绝缘体。 X射线光电子能谱用于表征表面非晶氧化物中的氧化态。这种材料可以很容易地用作廉价的纳米级隧道二极管,并以±5 V的常用电压工作。

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