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Preferential Orientation of Photochromic Gadolinium Oxyhydride Films

机译:光致变色钆氧化膜的优先定向

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摘要

We report preferential orientation control in photochromic gadolinium oxyhydride (GdHO) thin films deposited by a two-step process. Gadolinium hydride (GdH ) films were grown by reactive magnetron sputtering, followed by oxidation in air. The preferential orientation, grain size, anion concentrations and photochromic response of the films were strongly dependent on the deposition pressure. The GdHO films showed a preferential orientation along the [100] direction and exhibited photochromism when synthesized at deposition pressures of up to 5.8 Pa. The photochromic contrast was larger than 20% when the films were deposited below 2.8 Pa with a 0.22 H /Ar flow ratio. We argue that the relation of preferential orientation and the post deposition oxidation since oxygen concentration is known to be a key parameter for photochromism in rare-earth oxyhydride thin films. The experimental observations described above were explained by the decrease of the grain size as a result of the increase of the deposition pressure of the sputtering gas, followed by a higher oxygen incorporation.
机译:我们报告了通过两步法沉积的光致变色钆透水(GDHO)薄膜中的优先取向控制。通过反应性磁控溅射而生长氢化物(GDH)薄膜,然后在空气中氧化。薄膜的优先取向,粒度,阴离子浓度和光致变色响应强烈依赖于沉积压力。 GDHO膜沿[100]方向显示优先取向,并在高达5.8Pa的沉积压力下合成时表现出光致变色。当薄膜沉积在2.8Pa流下来时,光致变色对比度大于20%比率。我们认为,优先取向和后沉积氧化的关系,因为氧浓度是稀土酐薄膜中的光学变色的关键参数。由于溅射气体的沉积压力的增加,晶粒尺寸的降低来解释上述实验观察,然后进行更高的氧气掺入。

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