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Use of radiation effects for a controlled change in the chemical composition and properties of materials by intentional addition or substitution of atoms of a certain kind

机译:通过有意地添加或取代某种原子来控制材料化学成分和特性的辐射变化

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摘要

This study is a continuation of works [1-12] dealing with the field developed by the authors, namely, to widen the possibilities of radiation methods for a controlled change in the atomic composition and properties of thin-film materials. The effects under study serve as the basis for the following two methods: selective atom binding and selective atom substitution. Such changes in the atomic composition are induced by irradiation by mixed beams consisting of protons and other ions, the energy of which is sufficient for target atom displacements. The obtained experimental data demonstrate that the changes in the chemical composition of thin-film materials during irradiation by an ion beam of a complex composition take place according to mechanisms that differ radically from the well-known mechanisms controlling the corresponding chemical reactions in these materials. These radical changes are shown to be mainly caused by the accelerated ioninduced atomic displacements in an irradiated material during irradiation; that is, they have a purely radiation nature. The possibilities of the new methods for creating composite structures consisting of regions with a locally changed chemical composition and properties are demonstrated for a wide class of materials.
机译:这项研究是作者研究领域的工作的延续[1-12],即拓宽辐射方法以控制薄膜材料的原子组成和性质的受控变化的可能性。研究的效果是以下两种方法的基础:选择性原子结合和选择性原子取代。原子组成的这种变化是由质子和其他离子组成的混合束辐照引起的,质子和其他离子的能量足以满足目标原子的位移。所获得的实验数据表明,在通过复杂组成的离子束辐照期间,薄膜材料的化学组成发生了变化,其变化机理与控制这些材料中相应化学反应的众所周知的机理完全不同。这些自由基的变化主要是由于辐照过程中被辐照材料中加速的离子诱导的原子位移引起的。也就是说,它们具有纯粹的辐射性质。对于广泛的材料类别,证明了新方法用于创建由具有局部变化的化学成分和特性的区域组成的复合结构的可能性。

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