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    <identifier>10.57760/sciencedb.j00186.00769</identifier>
    <datestamp>2026-01-16T10:03:05Z</datestamp>
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  <dc:date>2026-01-16</dc:date>
  <dc:title>An improved model and structure&amp;ndash;energy database for hydrogen&amp;ndash;nanovoid interactions in tungsten</dc:title>
  <dc:identifier>doi:10.57760/sciencedb.j00186.00769</dc:identifier>
  <dc:language>en</dc:language>
  <dc:description>The Supplementary material includes a Word document entitled Supplementary_information, an Excel workbook named Eb_VnHq, and a compressed archive named BCC_V_001&amp;ndash;500.Supplementary_information: The document provides additional details to support the main text, including considerations for the initial H occupancy sites and the DFT data for V1&amp;ndash;V6.Eb_VnHq: The workbook tabulates energy data for stable V1&amp;ndash;V500 nanovoids with varying numbers of H atoms. For each nanovoid, H counts range from 1 up to the nanovoid's maximum surface H capacity. The dataset includes (i) the total binding energy of all H atoms and (ii) the incremental binding energy for each added H atom.BCC_V_001-500: The compressed archive contains 500 subfolders. Each subfolder provides the structure corresponding to the configuration with the maximum number of H atoms for a given nanovoid size. Subfolder names encode the vacancy and H counts: the first number is the vacancy count and the second is the H count (e.g., &amp;quot;V_001_H_012&amp;quot; denotes one vacancy and twelve H atoms). We generated structures for every nanovoid size and H count listed in Eb_VnHq (i.e., one structure per energy entry), but only the maximum-loading structures are included here due to storage constraints. Structures for other H counts are available from the corresponding author upon request.For nanovoids up to V15, structures use a 5&amp;times;5&amp;times;5 bcc supercell with 250 lattice sites (as in our DFT calculations in the main text). For nanovoids larger than V15, structures use a 16&amp;times;16&amp;times;16 bcc supercell with 8192 lattice sites (as in our MS calculations in the main text). All structures are provided in POSCAR format. Within each POSCAR file, the element labels are: &amp;quot;V&amp;quot; = vacancy, &amp;quot;W&amp;quot; = tungsten, and &amp;quot;H&amp;quot; = hydrogen. All structures are unrelaxed; every atom remains at its ideal position in the bcc lattice.</dc:description>
  <dc:subject>Hydrogen–nanovoid interactions; Tungsten; Wigner–Seitz polyhedron; Density functional theory; Binding energy</dc:subject>
  <dc:creator>Kang-Ni He</dc:creator>
  <dc:creator>Xiang-Shan Kong</dc:creator>
  <dc:creator>Jun Lin</dc:creator>
  <dc:creator>Liang Chen</dc:creator>
  <dc:rights>PUBLIC</dc:rights>
  <dc:rights>https://creativecommons.org/licenses/by-nc-nd/4.0/</dc:rights>
  <dc:type>dataset</dc:type>
  <dc:publisher>Science Data Bank</dc:publisher>
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