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        <datestamp>2026-09-18T11:04:56Z</datestamp>
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        <oai_dc:dc xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"  xmlns:oai_dc="http://www.openarchives.org/OAI/2.0/oai_dc/" xmlns:dc="http://purl.org/dc/elements/1.1/" xsi:schemaLocation="http://www.openarchives.org/OAI/2.0/oai_dc/ http://www.openarchives.org/OAI/2.0/oai_dc.xsd">
          <dc:title>Topology-Dependent
Free-Energy Barriers Underlying
Activity Differences in Toluene Disproportionation over HZSM‑5
and HMCM-22 Zeolites</dc:title>
          <dc:creator>Tao Wang (12008)</dc:creator>
          <dc:creator>Qingteng Chen (18450860)</dc:creator>
          <dc:creator>Jian Liu (33711)</dc:creator>
          <dc:creator>Bo Yang (104813)</dc:creator>
          <dc:subject>Biophysics</dc:subject>
          <dc:subject>Biochemistry</dc:subject>
          <dc:subject>Physical Sciences not elsewhere classified</dc:subject>
          <dc:subject>Chemical Sciences not elsewhere classified</dc:subject>
          <dc:subject>Ecology</dc:subject>
          <dc:subject>Biological Sciences not elsewhere classified</dc:subject>
          <dc:subject>Information Systems not elsewhere classified</dc:subject>
          <dc:subject>state confinement alone</dc:subject>
          <dc:subject>initially separated sites</dc:subject>
          <dc:subject>geometric descriptor based</dc:subject>
          <dc:subject>exhibit pronounced differences</dc:subject>
          <dc:subject>correlate approximately linearly</dc:subject>
          <dc:subject>complete reaction network</dc:subject>
          <dc:subject>barrier trends across</dc:subject>
          <dc:subject>energy sampling techniques</dc:subject>
          <dc:subject>calculated barriers across</dc:subject>
          <dc:subject>important industrial route</dc:subject>
          <dc:subject>toluene protonation barriers</dc:subject>
          <dc:subject>transfer transition states</dc:subject>
          <dc:subject>hzsm ‑ 5</dc:subject>
          <dc:subject>transfer barriers</dc:subject>
          <dc:subject>transfer route</dc:subject>
          <dc:subject>transition states</dc:subject>
          <dc:subject>energy cost</dc:subject>
          <dc:subject>attack barriers</dc:subject>
          <dc:subject>toluene disproportionation</dc:subject>
          <dc:subject>concerted route</dc:subject>
          <dc:subject>uniform explanation</dc:subject>
          <dc:subject>two aromatics</dc:subject>
          <dc:subject>molecular origin</dc:subject>
          <dc:subject>mainly associated</dc:subject>
          <dc:subject>distance change</dc:subject>
          <dc:subject>catalytic activity</dc:subject>
          <dc:subject>attack configuration</dc:subject>
          <dc:subject>activity difference</dc:subject>
          <dc:description>Toluene disproportionation is an important industrial
route to
para-xylene, in which HZSM-5 (MFI topology) and HMCM-22 (MWW topology)
are two representative zeolite catalysts that exhibit pronounced differences
in their catalytic activity. To understand the molecular origin of
this activity difference, we employ ab initio molecular dynamics combined
with enhanced free-energy sampling techniques to investigate the complete
reaction network of toluene disproportionation over representative
HZSM-5 and HMCM-22 models. The calculated free energy profiles show
that HZSM-5 favors a stepwise methyl-transfer route, whereas HMCM-22
favors a concerted route. Toluene protonation barriers are comparable
in the two zeolites, and transition-state confinement alone, as captured
by radial distribution functions around the methyl-transfer transition
states, does not provide a uniform explanation for the barrier trends
across the two mechanisms. Decomposition of the concerted methyl-transfer
barriers further reveals that the near-attack barriers are comparable
in both frameworks, while the substantially higher overall barriers
in HZSM-5 are mainly associated with the free-energy cost of bringing
the two aromatics from their initially separated sites into a near-attack
configuration. A geometric descriptor based on the distance change
between the initial and transition states is further introduced and
shown to correlate approximately linearly with the calculated barriers
across both zeolites and both mechanisms.</dc:description>
          <dc:date>2026-09-18T00:00:00Z</dc:date>
          <dc:type>Dataset</dc:type>
          <dc:type>Dataset</dc:type>
          <dc:identifier>10.1021/acs.jpcc.6c02828.s002</dc:identifier>
          <dc:relation>https://figshare.com/articles/dataset/Topology-Dependent_Free-Energy_Barriers_Underlying_Activity_Differences_in_Toluene_Disproportionation_over_HZSM_5_and_HMCM-22_Zeolites/33931276</dc:relation>
          <dc:rights>CC BY-NC 4.0</dc:rights>
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