Journal of Scientific Engineering Advances

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An Integrated Approach to the use of Ion Implantation (ii), Thermal Desorption Spectroscopy (tds), Nuclear Reactions (d-d) Methods for the Determination of Hydrogen Concentration in Metals using the Example of a System Zirconium-Deuterium (Zr-D)

Authors: Morozov О, Seliukova VV, Zhurba VI, Medvedev DV and Utyenkov SN
Published: 2026-09-23
Pages: 1-5
DOI: 10.63721/26JSEA0152
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Abstract

To determine certain characteristics of hydrogen in metals (concentration, depth distribution, and location in the crystal lattice), we propose using a combined approach, including thermal desorp-tion spectroscopy (tds), nuclear reaction analysis (d-d), ion implantation (ii).

An integrated approach to the use of ion implantation (ii), thermal desorption spectroscopy (tds), nuclear reactions (d-d) methods for the determination of hydrogen concentration in metals using the example of a system Zirconium-Deuterium (Zr-D).

To determine certain characteristics of hydrogen in metals (concentration, depth distribution, lo-cation in the crystal lattice), it is proposed to use a combined approach, including thermal desorp-tion spectroscopy (tds) and nuclear reaction (d-d) analysis.

The combined use of these research methods allows us to determine both the total hydrogen con-tent and the nature of its retention in traps, allowing for a more complete description of the pro-cesses of hydrogen dissolution, diffusion, and degassing in metals.

Application ion implantation (ii), thermal desorption spectroscopy (tds), nuclear reactions (d-d) methods for the determination of concentration hydrogen in metals using the zirconium-deuterium (Zr-D) system as an example.

The combined use of these research methods allows us to determine both the total hydrogen con-tent and the nature of its retention in traps, enabling a more complete description of the processes of hydrogen dissolu tion, diffusion, and degassing in metals.

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© 2026 The Author(s). Published by WM Journals.

This is an open access article distributed under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0), which permits unrestricted use, distribution and reproduction in any medium, provided the original author and source are credited.

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