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        <formatdesc>AFM data for all the plasma etched membranes in this work. These raw data have been processed with Gwyddion to obtain average roughness (Ra) data in Table 1 of the related manuscript.</formatdesc>
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        <formatdesc>Contact angle data and computation of Young contact angle via the Cassie Baxter equation. This was done by using the values for porosity obtained by ImageJ analysis on the top surfaces displayed in Figure 2 of the manuscript.</formatdesc>
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        <formatdesc>FESEM data used to prepare Figure 2 and Figure 4,</formatdesc>
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        <formatdesc>TEM data in Figure 3.</formatdesc>
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        <formatdesc>Flow enhancement data and calculation, for Figure 5.</formatdesc>
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    <datestamp>2022-09-21 12:37:56</datestamp>
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    <creators>
      <item>
        <name>
          <family>Meng</family>
          <given>Zheyi</given>
        </name>
        <id>jeromemeng@126.com</id>
        <affiliation>University College London</affiliation>
        <contact>FALSE</contact>
      </item>
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        <name>
          <family>Casanova</family>
          <given>Serena</given>
        </name>
        <id>serenacasanova92@gmail.com</id>
        <orcid>0000-0002-1668-545X</orcid>
        <affiliation>University of Bath</affiliation>
        <contact>FALSE</contact>
      </item>
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        <name>
          <family>Mohamed</family>
          <given>Halan</given>
        </name>
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        <affiliation>University College London</affiliation>
        <contact>FALSE</contact>
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        <name>
          <family>Kapil</family>
          <given>Nidhi</given>
        </name>
        <id>nidhi.kapil.15@ucl.ac.uk</id>
        <affiliation>University College London</affiliation>
        <contact>FALSE</contact>
      </item>
      <item>
        <name>
          <family>Xiao</family>
          <given>Xiao</given>
        </name>
        <id>xiao.xiao@ucl.ac.uk</id>
        <affiliation>Beihang University</affiliation>
        <contact>FALSE</contact>
      </item>
      <item>
        <name>
          <family>Zhang</family>
          <given>Yuheng</given>
        </name>
        <id>z.yuheng@ucl.ac.uk</id>
        <affiliation>Beihang University</affiliation>
        <contact>FALSE</contact>
      </item>
      <item>
        <name>
          <family>Coppens</family>
          <given>Marc-Olivier</given>
        </name>
        <id>m.coppens@ucl.ac.uk</id>
        <orcid>0000-0002-1810-2537</orcid>
        <affiliation>University College London</affiliation>
        <contact>FALSE</contact>
      </item>
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        <name>
          <family>Mattia</family>
          <given>Davide</given>
        </name>
        <id>D.Mattia@bath.ac.uk</id>
        <orcid>0000-0002-7679-4105</orcid>
        <affiliation>University of Bath</affiliation>
        <contact>TRUE</contact>
      </item>
    </creators>
    <title>Dataset for &quot;Polymer nanotube membranes synthesized via liquid deposition in anodic alumina&quot;</title>
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      <item>dept_chem_eng</item>
    </divisions>
    <keywords>membranes, nanotube membranes, soaking method, Hagen–Poiseuille, flow enhancement, polymer nanochannels, polystyrene</keywords>
    <abstract>This dataset includes the following raw data for the polymer nanotube membranes in the study - Roughness data,  Field Emission Scanning Electron Microscopy (FESEM) data, Transmission Electron Microscopy (TEM) data, Water Flow Enhancement and Permeance Data, and Contact Angle Data. These correspond to the following elements in the associated article &quot;Polymer nanotube membranes synthesized via liquid deposition in anodic alumina&quot;: 
- Roughness data (Table 1 in the main manuscript);
- FESEM data (Figure 2 and Figure 4 of the manuscript);
- TEM data (Figure 3 of the manuscript);
- Water Flow Enhancement and Permeance Data (Figure 5 and Table 1 of the manuscript);
- Contact Angle Data (Table 1 of the manuscript).</abstract>
    <date>2020-11-16</date>
    <publisher>University of Bath</publisher>
    <full_text_status>public</full_text_status>
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        <type>RightsHolder</type>
        <corpname>University of Bath</corpname>
      </item>
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      <item>
        <funder_name>Engineering and Physical Sciences Research Council</funder_name>
        <funder_id>https://doi.org/10.13039/501100000266</funder_id>
        <grant_id>EP/M01486X/1</grant_id>
        <project_name>SynFabFun - From Membrane Material Synthesis to Fabrication and Function</project_name>
      </item>
    </funding>
    <research_centres>
      <item>case</item>
    </research_centres>
    <collection_method>A complete description of the experimental methodology for the acquisition of this data is reported in the related manuscript and Electronic Supplementary Information (ESI).</collection_method>
    <techinfo>Gwyddion version 2.49 (http://gwyddion.net/) was used for AFM data processing; this software may be used to view the .000 and .001 files.</techinfo>
    <methodurl>
      <item>https://researchportal.bath.ac.uk/en/publications/615d7c80-a06e-44b3-8491-992a8b5a997e</item>
      <item>https://researchportal.bath.ac.uk/en/studentTheses/3760cb80-1ffc-4739-b347-7943ed6ac00c</item>
      <item>https://researchportal.bath.ac.uk/en/publications/5cdf68dc-5f3f-4428-a602-16079193a636</item>
      <item>https://researchportal.bath.ac.uk/en/publications/2fd63167-1e92-43ba-924b-d54137cef55b</item>
    </methodurl>
    <language>en</language>
    <version>1</version>
    <doi>10.15125/BATH-00721</doi>
    <related_resources>
      <item>
        <link>https://doi.org/10.1016/j.colcom.2020.100334</link>
        <type>pub</type>
      </item>
    </related_resources>
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