首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Combining Nitrogen, Argon, and Water Adsorption for Advanced Characterization of Ordered Mesoporous Carbons (CMKs) and Periodic Mesoporous Organosilicas (PMOs)
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Combining Nitrogen, Argon, and Water Adsorption for Advanced Characterization of Ordered Mesoporous Carbons (CMKs) and Periodic Mesoporous Organosilicas (PMOs)

机译:结合氮,氩和水的吸附作用,对有序介孔碳(CMK)和周期性介孔有机硅(PMO)进行高级表征

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摘要

Ordered mesoporous CMK carbons and periodic mesoporous organosilica (PMO) materials have been characterized by combining nitrogen (77.4 K) and argon (87.3 K) adsorption with recently developed quenched solid density functional theory (QSDFT). Systematic, high-resolution water adsorption experiments have been performed in the temperature range from 298 to 318 K in order to ascertain the effect of surface chemistry (using periodic mesoporous organosilicas (PMOs) of given pore size) and pore size/pore geometry (using CMK-3, CMK-8 carbons) on the adsorption, pore filling, condensation and hysteresis behavior. These data reveal how the interplay between confined geometry effects and the strength of the adsorption forces influence the adsorption, wetting, and phase behavior of pore fluids. Further, our results indicate that water adsorption is quite sensitive to both small changes in pore structure and surface chemistry, showing the potential of water adsorption as a powerful complementary tool for the characterization of nanoporous solids.
机译:通过结合氮(77.4 K)和氩(87.3 K)吸附与最近开发的淬灭固体密度泛函理论(QSDFT),对有序介孔CMK碳和周期性介孔有机硅(PMO)材料进行了表征。为了确定表面化学作用(使用给定孔径的周期性介孔有机硅(PMO))和孔径/孔的几何形状(采用化学气相色谱法),已在298至318 K的温度范围内进行了系统的高分辨率水吸附实验。 CMK-3,CMK-8碳)的吸附,孔填充,冷凝和滞后行为。这些数据揭示了有限的几何效应和吸附力强度之间的相互作用如何影响孔隙流体的吸附,润湿和相行为。此外,我们的结果表明,水吸附对孔结构和表面化学的微小变化都非常敏感,这表明水吸附作为表征纳米多孔固体的有力补充工具的潜力。

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