4.7 Article

Ion-induced deuterium retention in tungsten coatings on carbon substrate

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JOURNAL OF NUCLEAR MATERIALS
卷 419, 期 1-3, 页码 194-200

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ELSEVIER
DOI: 10.1016/j.jnucmat.2011.07.023

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  1. Impuls-und Vernetzungsfond der Helmholtz-Gemeinschaft e.V.

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Deuterium retention in different tungsten (W) coatings on carbon substrates was investigated for various incident ion energies ranging from 20 to 200 eV per deuterium atom and fluences ranging from 1 x 10(23) m(-2) to 2 x 10(25) m(-2). The targets were irradiated by deuterium ions at the IPP laboratory with a mass-separated ion beam with a flux of 10(19) D/m(2) s and with a deuterium plasma providing a flux of 1020 D/m(2) s. Irradiation has been done at different sample temperatures ranging from 320 to 650 K. The depth profile of deuterium in the W coatings was measured up to 6 mu m depth by nuclear reaction analysis (NRA) and the total retained amount was determined by thermal desorption spectroscopy. It is shown that deuterium retention significantly depends on the microstructure of each W coating. The deuterium retention in W coating of 7 mu m thickness produced by combined magnetron-sputtering and ion implantation technique is higher compared to physical vapour deposited W coating of 4-5 mu m thickness and 200 mu m thickness plasma-sprayed W coating for all investigated energies and sample temperatures up to 650 K. (C) 2011 Elsevier B.V. All rights reserved.

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