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高岭土基硅酸盐纳米片作为番红花红碱性染料潜在吸附剂的物理化学、空间和能量表征:剥离试剂和技术的影响

Physicochemical, steric, and energetic characterization of kaolinite based silicate nano-sheets as potential adsorbents for safranin basic dye: effect of exfoliation reagent and techniques.

作者信息

Ali Samar Mohamed, Mohamed Reham A, Abdel-Khalek Ahmed A, Ahmed Ashour M, Abukhadra Mostafa

机构信息

Department of Chemistry, Faculty of Science, Beni-Suef University, Beni-Suef, Egypt.

Materials Technologies and their Applications Lab, Geology Department, Faculty of Science, Beni-Suef University, Beni-Suef, Egypt.

出版信息

Front Chem. 2024 Oct 18;12:1455838. doi: 10.3389/fchem.2024.1455838. eCollection 2024.

Abstract

Kaolinite was subjected to advanced exfoliation processes to form separated nano-silicate sheets (EXK) with enhanced physicochemical properties as adsorbents. This involved the incorporation of different exfoliating agents, urea (U/EXK), KNO (N/EXK), and CTAB (C/EXK), highlighting their impacts on their textural and surficial properties as adsorbents for safranin dye. The applied characterization techniques confirmed the higher exfoliating degree of C/EXK, followed by N/EXK and U/EXK. This appeared significantly in the determined surface area (55.7 m/g (C/EXK), 36.7 m/g (U/EXK), and 47.1 m/g (N/EXK)) and adsorption performances. The C/EXK structure displayed a better safranin uptake capacity (273.2 mg/g) than N/EXK (231 mg/g) and U/EXK (178.4 mg/g). Beside the remarkable differences in textural properties, the advanced mathematical modeling and the corresponding steric and energetic parameters illustrate the mentioned uptake properties. The interface of C/EXK is highly saturated by active uptake sites (Nm = 158.8 mg/g) as compared to N/EXK (109.3 mg/g) and U/EXK (93.4 mg/g), which is in agreement with the characterization findings and the expected higher exposure of siloxane groups. Each of these sites can be filled with four dye molecules using C/EXK and N/EXK, which implies the vertical orientation of these adsorbed ions and the effective operation of multi-molecular mechanisms. The energetic (ΔE < 40 kJ/mol) and thermodynamic investigations indicate the spontaneous, physical, and exothermic uptake of safranin molecules by EXK particulates. These mechanisms might involve dipole bonding (2-29 kJ/mol), electrostatic attraction (2-50 kJ/mol), van der Waals forces (4-10 kJ/mol), and hydrogen bonding (<30 kJ/mol).

摘要

高岭土经过先进的剥离工艺,形成具有增强物理化学性质的分离纳米硅酸盐片(EXK)作为吸附剂。这涉及加入不同的剥离剂,尿素(U/EXK)、硝酸钾(N/EXK)和十六烷基三甲基溴化铵(C/EXK),突出了它们作为番红染料吸附剂对其结构和表面性质的影响。应用的表征技术证实了C/EXK的剥离程度更高,其次是N/EXK和U/EXK。这在测定的表面积(55.7 m²/g(C/EXK)、36.7 m²/g(U/EXK)和47.1 m²/g(N/EXK))和吸附性能中显著体现。C/EXK结构显示出比N/EXK(231 mg/g)和U/EXK(178.4 mg/g)更好的番红吸附容量(273.2 mg/g)。除了结构性质上的显著差异外,先进的数学建模以及相应的空间和能量参数说明了上述吸附性能。与N/EXK(109.3 mg/g)和U/EXK(93.4 mg/g)相比,C/EXK的界面被活性吸附位点高度饱和(Nm = 158.8 mg/g),这与表征结果以及预期的硅氧烷基团更高暴露度一致。使用C/EXK和N/EXK时,这些位点中的每一个都可以填充四个染料分子,这意味着这些吸附离子的垂直取向以及多分子机制的有效运作。能量(ΔE < 40 kJ/mol)和热力学研究表明EXK颗粒对番红分子的自发、物理和放热吸附。这些机制可能涉及偶极键合(2 - 29 kJ/mol)、静电吸引(2 - 50 kJ/mol)、范德华力(4 - 10 kJ/mol)和氢键(<30 kJ/mol)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ccc/11528917/281d3d331be6/fchem-12-1455838-g001.jpg

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