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基于二烷基膦酸酯的离子液体在γ-氧化铝上的可控接枝:用于CO分离应用的高潜力混合材料的设计

Controlled grafting of dialkylphosphonate-based ionic liquids on γ-alumina: design of hybrid materials with high potential for CO separation applications.

作者信息

Pizzoccaro-Zilamy M A, Piña S Muñoz, Rebiere B, Daniel C, Farrusseng D, Drobek M, Silly G, Julbe A, Guerrero G

机构信息

Institut Européen des Membranes, UMR5635, CNRS-UM-ENSCM, Université de Montpellier (CC047) Place Eugène Bataillon 34095 Montpellier Cedex 5 France.

Institut Charles Gerhardt, UMR5253, CNRS-UM-ENSCM, Université de Montpellier Place Eugène Bataillon 34095 Montpellier Cedex 5 France

出版信息

RSC Adv. 2019 Jun 25;9(35):19882-19894. doi: 10.1039/c9ra01265f.

Abstract

In this work we provide a detailed study on grafting reactions of various dialkylphosphonate-based ILs. Special attention has been devoted to a comprehensive investigation on how the nature of the anion and the organic spacer composition (hydrophilic or hydrophobic groups) could impact the grafting densities and bonding modes of phosphonate-based ILs anchored to γ-alumina (γ-AlO) powders. For the first time, the bonding of phosphonate-based ILs with only surface hexacoordinated aluminum nuclei was established using both solid-state P-Al D-HMQC and P NMR experiments. It has been demonstrated that the grafting of dialkylphosphonate-based ILs is competing with a hydrolysis and/or precipitation process which could be attractively hindered by changing the anion nature: bis(trifluoromethane)sulfonylimide anion instead of bromide. In additon, independently of the chosen spacer, similar reaction conditions led to equivalent grafting densities with different bonding mode configurations. The CO physisorption analysis on both pure ILs and grafted ILs on alumina powders confirmed that the initial sorption properties of ILs do not change upon grafting, thus confirming the attractive potential of as-grafted ILs for the preparation of hybrid materials in a form of selective adsorbers or membranes for CO separation applications.

摘要

在这项工作中,我们对各种基于二烷基膦酸酯的离子液体的接枝反应进行了详细研究。特别关注了阴离子性质和有机间隔基组成(亲水或疏水基团)如何影响锚定在γ-氧化铝(γ-AlO)粉末上的基于膦酸酯的离子液体的接枝密度和键合模式的全面研究。首次通过固态P-Al D-HMQC和P NMR实验确定了仅与表面六配位铝核结合的基于膦酸酯的离子液体的键合。已经证明,基于二烷基膦酸酯的离子液体的接枝与水解和/或沉淀过程相互竞争,通过改变阴离子性质(双(三氟甲烷)磺酰亚胺阴离子而非溴离子)可以有效地抑制该过程。此外,无论选择何种间隔基,相似的反应条件都会导致具有不同键合模式构型的等效接枝密度。对纯离子液体和氧化铝粉末上接枝的离子液体进行的CO物理吸附分析证实,离子液体的初始吸附性能在接枝后不会改变,从而证实了接枝后的离子液体在制备用于CO分离应用的选择性吸附剂或膜形式的杂化材料方面具有诱人的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cef/9065391/0fb88ad84873/c9ra01265f-f1.jpg

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