Postgrowth annealing effects on structural, optical, and electrical properties of β-MoO3 films grown by molecular beam epitaxy

S. Yagi, Masayuki Matsuo, K. Koike, Y. Harada, S. Sasa, M. Yano
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引用次数: 1

Abstract

We report the postgrowth annealing effects on the structural, optical, and electrical properties of a low-temperature grown β-phase MoO3 film on a c-plane sapphire substrate by molecular beam epitaxy. By employing the postgrowth annealing at 600°C in an oxygen atmosphere, the film was completely transformed from β-phase to thermo-dynamically stable α-phase. On the other hand, oxygen deficient MoO3-x domains were introduced into the film by the annealing at the same temperature in a nitrogen atmosphere. The latter film exhibited a high absorbance in a visible region accompanied by a decrease in resistivity.
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生长后退火对分子束外延生长β-MoO3薄膜结构、光学和电学性能的影响
本文报道了生长后退火对c-平面蓝宝石衬底上低温生长β相MoO3薄膜的结构、光学和电学性能的影响。在600℃的氧气气氛中进行生长后退火,薄膜由β相完全转变为热力学稳定的α相。另一方面,通过在氮气气氛中相同温度的退火,在薄膜中引入了缺氧MoO3-x结构域。后一种薄膜在可见光区表现出高吸光度,同时电阻率降低。
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