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Ion irradiation effects in nonmetals: formation of nanocrystals and novel microstructures

机译:非金属中的离子辐照效应:纳米晶体的形成和新颖的微结构

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摘要

Ion implantation is a versatile and powerful technique for producing nanocrystal precipitates embedded in the near-surface region of materials. Radiation effects that occur during the implantation process can lead to complex microstructures and particle size distributions, and in the present work, we focus on the application of these effects to produce novel microstructural properties for insulating or semiconducting nanocrystals formed in optical host materials. Nanocrystal precipitates can be produced in two ways: by irradiation of pure ( i.e. , non-implanted) crystalline or amorphous materials, or by ion implantation followed by either thermal annealing or subsequent additional irradiation. Different methods for the formation of novel structural relationships between embedded nanocrystals and their hosts have been developed, and the results presented here demonstrate the general flexibility of ion implantation and irradiation techniques for producing unique near-surface nanocomposite microstructures in irradiated host materials.
机译:离子注入是制造嵌入在材料的表面附近区域的纳米晶体析出物等的灵活和强大的技术。在植入过程期间发生的辐射效应可以导致复杂的微观和粒度分布,并且在目前的工作中,我们侧重于这些效应的应用以产生用于绝缘或半导体形成在光学基质材料的纳米晶体新颖微结构性质。纳米晶体的沉淀可以通过两种方式来生产:通过纯的(即,非注入)结晶或无定形材料,或通过离子注入,接着为无论热退火或随后的附加照射的照射。不同的方法用于嵌入式纳米晶体和它们的宿主之间的新颖的结构关系的形成已被开发,其结果呈现在这里展示的离子注入和辐照技术用于在辐照基质材料产生独特的表面附近的纳米复合材料的微结构的一般的灵活性。

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