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    <link>http://pucir.inflibnet.ac.in:8080/jspui/handle/123456789/825</link>
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    <pubDate>Thu, 21 May 2026 02:45:22 GMT</pubDate>
    <dc:date>2026-05-21T02:45:22Z</dc:date>
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      <title>Theoretical Study of ZnS Monolayer Adsorption Behavior for CO and HF Gas Molecules</title>
      <link>http://pucir.inflibnet.ac.in:8080/jspui/handle/123456789/826</link>
      <description>Title: Theoretical Study of ZnS Monolayer Adsorption Behavior for CO and HF Gas Molecules
Authors: Vanchhawng, Lalmuanpuia
Abstract: Adsorption of carbon monoxide (CO) and hydrogen&#xD;
fluoride (HF) gas molecules on a ZnS monolayer with weak&#xD;
van der Waals interactions is studied using the DFT + U method.&#xD;
From our calculation, the ZnS monolayer shows chemisorption&#xD;
with CO (Eads = −0.96 eV) and HF (Eads = −0.86 eV) gas&#xD;
molecules. Bader charge analysis shows that charge transfer is&#xD;
independent of the binding environment. A higher energy barrier&#xD;
for CO when migrating from one optimal site to another suggests&#xD;
that clustering may be avoided by the introduction of multiple CO&#xD;
molecules upon ZnS, while the diffusion energy barrier (DEB) for&#xD;
HF suggests that binding may occur more easily for HF gas upon&#xD;
the ZnS ML. Adsorption of the considered diatomic molecule also&#xD;
results in a significant variation in effective mass and therefore can be used to enhance the carrier mobility of the ZnS ML.&#xD;
Additionally, the calculation of recovery time shows that desirable sensing and desorption performance for CO and HF gas molecules can be achieved at room temperature (300 K).</description>
      <pubDate>Sat, 01 Jan 2022 00:00:00 GMT</pubDate>
      <guid isPermaLink="false">http://pucir.inflibnet.ac.in:8080/jspui/handle/123456789/826</guid>
      <dc:date>2022-01-01T00:00:00Z</dc:date>
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