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Modification of amino functionalized silica nanoparticles with L-proline and furanacrylic acid as novel composites for the efficient removal of methyl orange

材料科学 傅里叶变换红外光谱 甲基橙 酰胺 热重分析 核化学 纳米颗粒 粒径 复合材料 化学工程 化学 有机化学 纳米技术 催化作用 工程类 光催化
作者
Syed Salman Shafqat,Sajjad Hussain Sumrra,Muhammad Nadeem Zafar,Sadia Aslam,Manav Vohra,Maria Nosheen,Abdulrahman A. Almehizia,Syed Salman Shafqat,Muhammad Asim Khan
出处
期刊:Materials today communications [Elsevier BV]
卷期号:39: 108934-108934 被引量:6
标识
DOI:10.1016/j.mtcomm.2024.108934
摘要

The present study deals with the preparation of new composites in which L-proline (LP) and furnacrylic acid (FA) have been grafted on surface of amino functionalized silica (AFS). At first, AFS were prepared by sol-gel approach using tetraethosysilane (TEOS) as silica source and aminopropyltriethoxysilane (APTES) as silica modifiers. Taking the advantage of amino group on AFS surface, L-proline grafted silica (AFS-LP) and furnacrylica acid (AFS-FA) were easily grafted on silica by post modification approach. As prepared composites were characterized by FTIR, SEM, XRD and TGA. The evidence of LP and FA on AFS was elucidated from the FTIR bands found at 1650-1698 cm-1 related to carbonyl group C=O) of amide. Additionally, peaks observed at 2965 cm-1 (C-H stretching) of propyl groups and at 1050 cm-1 (Si-O-Si) indicated that the backbone of the material is preserved as silica. The micro images of SEM depicted that the AFS are spherical in shape and have more degree of monodispersivity whereas the SEM images of composites (AFS-FA and AFS-LP) have larger particle size and less degree of monodispersivity. Likewise, XRD peaks at 2θ (~12o) revealed the mesoporosity of silica as well as hybrid silica and further depression in this peak in case of AFS-FA and AFS-LPA depicted the existence of organic moieties on silica. TGA analysis depicted three decomposition steps (high weight loss) in case of AFS-FA and AFS-LP in contrast to two decomposition steps observed in case of AFS. The higher weight loss observed in the case of hybrid composites depicted the grafting of organic molecules on AFS. The prepared composites AFS-LP and AFS-FA were deployed to investigate their adsorption capacity to remove methyl orange (MO) from aqueous media. Experiments revealed that the composites have high adsorption capacity in acidic media (pH=2) with % removal of 85.05% for AFS-LP and 81.70% for AFS-FA. The experimental data was evaluated for adsorption isotherms and value of correlation factor (R2) was close to unity in case of Freundlich representing that the adsorption follows Freundlich isotherm. The data was also evaluated for kinetic models and R2 as well as experimental and calculate values of Qe were close to each other in pseudo-second order kinetic model.
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