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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >2D-NLDFT adsorption models for carbon slit-shaped pores with surface energetical heterogeneity and geometrical corrugation
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2D-NLDFT adsorption models for carbon slit-shaped pores with surface energetical heterogeneity and geometrical corrugation

机译:具有表面能非均质性和几何波纹的碳缝形孔的2D-NLDFT吸附模型

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In this work, we show that the standard slit pore model widely used for the characterization of activated carbons may be improved by introducing structural and/or energetical heterogeneity to the surface of pore walls. The existing one dimensional slit pore model assumes graphite-like energetically uniform pore walls. As a result of this assumption adsorption isotherms calculated by the non local density functional theory (NLDFT) do not fit accurately the experimental N2 data measured for real activated carbons. Assuming a graphene-based structural framework for activated carbons and using a 2D-NLDFT treatment of the fluid density in the pores we consider two options for model pores: energetically heterogeneous (EH) and geometrically corrugated (GC). For testing, we applied these two models to the pore size analysis of porous carbons that were giving poor results of the analysis with the standard slit model. We found that the typical artifacts of the homogeneous slit pore model were eliminated. Also, the agreement of the new models with experimental data was significantly better than that of the standard slit model.
机译:在这项工作中,我们表明可以通过在孔壁表面引入结构和/或能量异质性来改善广泛用于表征活性炭的标准狭缝孔模型。现有的一维狭缝孔模型假定石墨状的能量均匀的孔壁。这种假设的结果是,由非局部密度泛函理论(NLDFT)计算出的吸附等温线无法准确拟合实际活性炭的实验N2数据。假设基于石墨烯的活性炭结构框架,并使用2D-NLDFT处理孔隙中的流体密度,我们考虑模型孔隙的两种选择:能量非均质(EH)和几何波纹(GC)。为了进行测试,我们将这两个模型应用于多孔碳的孔径分析,这些结果与标准狭缝模型的分析结果不符。我们发现消除了均质裂隙孔隙模型的典型伪像。而且,新模型与实验数据的一致性明显优于标准狭缝模型。

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