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首页> 外文期刊>Journal of Colloid and Interface Science >Application of water-activated carbon isotherm models to water adsorption isotherms of single-walled carbon nanotubes
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Application of water-activated carbon isotherm models to water adsorption isotherms of single-walled carbon nanotubes

机译:水活化碳等温线模型在单壁碳纳米管吸水等温线中的应用

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The objective of this study is to understand the interactions of water with novel nanocarbons by implementing semiempirical models that were developed to interpret adsorption isotherms of water in common carbonaceous adsorbents. Water adsorption isotherms were gravimetrically determined on several single-walled carbon nanotube (SWNT) and activated carbon samples. Each isotherm was fitted to the Dubinin-Serpinsky (DS) equation, the Dubinin-Astakov equation, the cooperative multimolecular sorption theory, and the Do and Do equations. The applicability of these models was evaluated by high correlation coefficients and the significance of fitting parameters, especially those that delineate the concentration of hydrophilic functional groups, micropore volume, and the size of water clusters. Samples were also characterized by spectroscopic and adsorption techniques, and properties complementary to those quantified by the fitting parameters were extracted from the data collected. The comparison of fitting parameters with sample characterization results was used as the methodology for selecting the most informative and the best-fitting model. We conclude that the Do equation, as modified by Marban et al., is the most suitable semiempirical equation for predicting from experimental isotherms alone the size of molecular clusters that facilitate adsorption in SWNTs, deconvoluting the experimental isotherms into two subisotherms: adsorption onto hydrophilic groups and filling of micropores, and quantifying the concentration of hydrophilic functional groups, as well as determining the micropore volume explored by water. With the exception of the DS equation, the application of other water isotherm models to SWNTs is not computationally tractable. The findings from this research should aid studies of water adsorption in SWNTs by molecular simulation, which remains the most popular tool for understanding the microscopic behavior of water in nanocarbons. (C) 2008 Elsevier Inc. All rights reserved.
机译:这项研究的目的是通过实施半经验模型来理解水与新型纳米碳的相互作用,该模型用于解释常见碳质吸附剂中水的吸附等温线。在几个单壁碳纳米管(SWNT)和活性炭样品上通过重量分析法测定了水吸附等温线。每个等温线都适合于Dubinin-Serpinsky(DS)方程,Dubinin-Astakov方程,协同多分子吸附理论以及Do和Do方程。这些模型的适用性通过高相关系数和拟合参数的重要性进行评估,尤其是那些描述亲水性官能团浓度,微孔体积和水团簇大小的参数。还通过光谱和吸附技术对样品进行了表征,并从收集的数据中提取了与拟合参数所定量的那些互补的特性。将拟合参数与样品表征结果的比较用作选择信息最丰富和最拟合模型的方法。我们得出的结论是,由Marban等人修改的Do方程是最适合的半经验方程,用于仅根据实验等温线预测促进SWNT吸附的分子簇的大小,将实验等温线解卷积为两个亚等温线:吸附到亲水基填充微孔,定量亲水性官能团的浓度,并确定水探索的微孔体积。除DS方程式外,将其他水等温线模型应用于SWNT的方法在计算上难以处理。这项研究的发现应有助于通过分子模拟研究SWNT中的水吸附,这仍然是了解纳米碳中水微观行为的最流行工具。 (C)2008 Elsevier Inc.保留所有权利。

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