<?xml version='1.0' encoding='utf-8'?>
<documents xmlns='http://eprints.org/ep2/data/2.0'>
  <document id='https://researchdata.bath.ac.uk/id/document/17887'>
    <docid>17887</docid>
    <rev_number>2</rev_number>
    <files>
      <file id='https://researchdata.bath.ac.uk/id/file/66374'>
        <fileid>66374</fileid>
        <datasetid>document</datasetid>
        <objectid>17887</objectid>
        <filename>FigS12b_NBO_per_T_vs_Al-O_CN_depolymerised_Al4+Al5.agr</filename>
        <mime_type>text/plain</mime_type>
        <hash>48ed72a1d0997238cc456371abb3d477</hash>
        <hash_type>MD5</hash_type>
        <filesize>35450</filesize>
        <mtime>2024-04-08 15:03:50</mtime>
        <url>https://researchdata.bath.ac.uk/1387/51/FigS12b_NBO_per_T_vs_Al-O_CN_depolymerised_Al4%2BAl5.agr</url>
      </file>
    </files>
    <eprintid>1387</eprintid>
    <pos>51</pos>
    <placement>51</placement>
    <mime_type>text/plain</mime_type>
    <format>other</format>
    <formatdesc>Figure S12(b) shows the dependence of the number of non-bridging oxygen atoms per tetrahedron N_{NBO}/N_T on the Al-O coordination number for the depolymerized glasses with f_{NBO} ~0.22-0.24 at rho^prime = 1. The fraction of NBO atoms was calculated by assuming that f_{Si(IV)} = 1 and only the Si(IV), Al(IV) and Al(V) species contribute towards the network.</formatdesc>
    <language>en</language>
    <security>public</security>
    <license>cc_by</license>
    <main>FigS12b_NBO_per_T_vs_Al-O_CN_depolymerised_Al4+Al5.agr</main>
    <content>data</content>
  </document>
</documents>
