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Regional Characteristics in Ultradeep MXene Slit Nanopores: Insights from Molecular Dynamics Simulation
Published 2025“…As the interlayer spacing varies, the ion distribution in the electrode pores exhibits regional characteristics: in the ordered region near the bulk region, a stable electrical double-layer (EDL) structure is maintained, whereas in the deeper mixed region, persistent co-ion presence and significant disorder are observed. Dominated by the mixed region, the total energy variation of the electrode decreases as the interlayer spacing decreases, with energy changes of 8526.52, 7443.52, and 6640.99 kJ·mol<sup>–1</sup> at interlayer spacings of 1.2, 1.0, and 0.8 nm, respectively, representing reductions of approximately 12.7 and 22.1% compared to 1.2 nm. …”
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Regional Characteristics in Ultradeep MXene Slit Nanopores: Insights from Molecular Dynamics Simulation
Published 2025“…As the interlayer spacing varies, the ion distribution in the electrode pores exhibits regional characteristics: in the ordered region near the bulk region, a stable electrical double-layer (EDL) structure is maintained, whereas in the deeper mixed region, persistent co-ion presence and significant disorder are observed. Dominated by the mixed region, the total energy variation of the electrode decreases as the interlayer spacing decreases, with energy changes of 8526.52, 7443.52, and 6640.99 kJ·mol<sup>–1</sup> at interlayer spacings of 1.2, 1.0, and 0.8 nm, respectively, representing reductions of approximately 12.7 and 22.1% compared to 1.2 nm. …”
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Regional Characteristics in Ultradeep MXene Slit Nanopores: Insights from Molecular Dynamics Simulation
Published 2025“…As the interlayer spacing varies, the ion distribution in the electrode pores exhibits regional characteristics: in the ordered region near the bulk region, a stable electrical double-layer (EDL) structure is maintained, whereas in the deeper mixed region, persistent co-ion presence and significant disorder are observed. Dominated by the mixed region, the total energy variation of the electrode decreases as the interlayer spacing decreases, with energy changes of 8526.52, 7443.52, and 6640.99 kJ·mol<sup>–1</sup> at interlayer spacings of 1.2, 1.0, and 0.8 nm, respectively, representing reductions of approximately 12.7 and 22.1% compared to 1.2 nm. …”
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Results of iterative calculation of reservoir data in different water cut stages.
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The distribution of residual oil in the numerical simulation model when the water cut reaches 98%.
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Effect of displacing medium viscosity on volume proportion of weak water-flushed zone.
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The distribution of weak water-flushed zones of three-layer numerical simulation model.
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Effect of high permeability layer plugging on volume proportion of weak water-flushed zone.
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