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脱氟对金属有机框架材料(MeMOFs,FMOFs的甲基化类似物)疏水性以及高湿度下一氧化碳和甲烷吸附的影响

Effects of de-fluorination on hydrophobicity and on CO and CH adsorption under high humidity in MeMOFs, methylated analogues of FMOFs.

作者信息

Yasmeen Rashida, Islam Sheikh M S, Ayeni Olajumoke M, Moghadam Peyman Z, Du Jincheng, Omary Mohammad A

机构信息

Department of Materials Science & Engineering, University of North Texas, 1155 Union Circle, Denton, Texas-76203, USA.

Department of Chemistry, University of North Texas, 1155 Union Circle, Denton, Texas-76203, USA.

出版信息

Dalton Trans. 2025 May 13;54(19):7641-7658. doi: 10.1039/d5dt00242g.

Abstract

Herein, we report carbon dioxide (CO) and methane (CH) adsorption behavior in MeMOFs, methylated analogues of FMOFs with -CF groups replaced with -CH, utilizing grand canonical Monte Carlo (GCMC) simulations at 288, 298, and 308 K and ≤ 40 bar and density functional theory (DFT) computations of adsorption energies. Isosteric heats of adsorption (), Henry's constants () and interaction energies were used to analyze the adsorbate-adsorbent interaction strengths and gas uptake of guest molecules. The of CO was found to be 1.29-1.73 times higher in MeMOF-1 than in FMOF-1, . 1.30-1.47 times for CH, hence demonstrating higher guest affinity to MeMOF-1 than to the FMOF-1 polymorph. Simulated isotherms were further fitted with Langmuir, Langmuir-Freundlich, and Tóth models to calculate the isosteric heat of adsorption at infinite dilution () using the Clausius-Clapeyron equation. The data were then compared with those obtained from force-field-based Monte Carlo (MC) simulations to determine the consistency. The Tóth model presented excellent characterization of CO and CH adsorption, implying both FMOF-1 and MeMOF-1 materials have inhomogeneous surfaces. The order of the values obtained using the Clausius-Clapeyron equation was consistent with that obtained from MC simulations and confirmed the higher uptake of CO and CH in MeMOF-1 as predicted by GCMC. The presence of HO vapor, up to 80% relative humidity, did not affect the CO and CH adsorption in MeMOF-1 structures, as was observed in the analogous FMOF-1 parent structure. The larger pore size and surface area upon substituting -CF groups with -CH groups allow for significantly greater CO and CH uptake in MeMOFs compared to FMOFs with no water uptake even at high humidity. These simulations were applied upon MeMOF analogues of multiple FMOF-1 polymorphs known to date and are thus expected to hold for MeMOF analogues of other FMOF and MOFF structures reported by the Omary and Miljanić teams, respectively. Experimental data have validated the superhydrophobic nature of the MeMOF-1 composition a polymorphic form with a different topology, MeMOF-2, attaining an ∼100° increase in water-drop contact angles, from ∼74° for a control plastic substrate to ∼172° upon dry-coating it with MeMOF-2. Experimentally synthesized MeMOF-2 possesses the same {Ag(3,5-(CH)-1,2,4-triazolate)} empirical formula as that of simulated MeMOF-1 structures, albeit with a different crystal structure and lower porosity.

摘要

在此,我们报告了甲基金属有机框架(MeMOFs)中二氧化碳(CO₂)和甲烷(CH₄)的吸附行为。MeMOFs是氟代金属有机框架(FMOFs)的甲基化类似物,其中-CF₃基团被-CH₃取代。我们利用巨正则蒙特卡罗(GCMC)模拟在288 K、298 K和308 K以及压力≤40 bar的条件下进行研究,并通过密度泛函理论(DFT)计算吸附能。等量吸附热(qst)、亨利常数(KH)和相互作用能被用于分析吸附质与吸附剂之间的相互作用强度以及客体分子的气体吸收情况。发现MeMOF-1中CO₂的qst比FMOF-1中的高1.29 - 1.73倍,CH₄的qst高1.30 - 1.47倍,这表明客体分子对MeMOF-1的亲和力高于对FMOF-1多晶型物的亲和力。模拟等温线进一步用朗缪尔、朗缪尔 - 弗伦德利希和托特模型进行拟合,以使用克劳修斯 - 克拉佩龙方程计算无限稀释时的等量吸附热(qst∞)。然后将数据与基于力场的蒙特卡罗(MC)模拟获得的数据进行比较,以确定一致性。托特模型对CO₂和CH₄的吸附表现出出色的表征,这意味着FMOF-1和MeMOF-1材料都具有不均匀的表面。使用克劳修斯 - 克拉佩龙方程获得的qst∞值顺序与MC模拟获得的一致,并证实了GCMC预测的MeMOF-1中CO₂和CH₄的吸收量更高。正如在类似的FMOF-1母体结构中所观察到的那样,高达80%相对湿度的水蒸气的存在并不影响MeMOF-1结构中CO₂和CH₄的吸附。用-CH₃基团取代-CF₃基团后,孔径和表面积增大,使得MeMOFs中CO₂和CH₄的吸收量比无水吸收的FMOFs显著增加,即使在高湿度下也是如此。这些模拟应用于迄今为止已知的多种FMOF-1多晶型物的MeMOF类似物,因此预计对分别由奥马里和米尔亚尼奇团队报道的其他FMOF和MOFF结构的MeMOF类似物也成立。实验数据验证了MeMOF-1组成的超疏水性质——一种具有不同拓扑结构的多晶型物MeMOF-2,使水滴接触角增加了约100°,从对照塑料基板的约74°增加到用MeMOF-2干涂后的约172°。实验合成的MeMOF-2具有与模拟的MeMOF-1结构相同的{Ag(3,5-(CH₃)-1,2,4-triazolate)}经验式,尽管晶体结构不同且孔隙率较低。

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