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基于统计物理学的L-苯丙氨酸在活性炭上吸附的物理化学研究

A statistical physics-based physicochemical study of L-phenylalanine adsorption on activated carbon.

作者信息

Knani Salah, Wjihi Sarra, Bouzid Mohamed, Silva Luis Felipe Oliveira, Oliveira Marcos Leandro Silva, Mahmoud Safwat A, Alenazi Abdulaziz, Selmi Ridha, Alshammari Abdulmajeed

机构信息

Department of Physics, College of Science, Northern Border University, Arar, Saudi Arabia.

Laboratory of Quantum and Statistical Physics LR 18 ES 18, Faculty of Sciences of Monastir, Environment Street, 5019, Monastir, Tunisia.

出版信息

J Mol Model. 2024 Sep 16;30(10):335. doi: 10.1007/s00894-024-06142-5.

Abstract

CONTEXT

In this comparative study of the adsorption of L-phenylalanine (L-Phe) on two modified low-activated carbons (ACK and ACZ) at four temperatures (293-313 K), steric and energetic characteristics of adsorption were investigated. An advanced statistical physics multilayer model involving single-layer and double-layer adsorption scenarios was developed to interpret the L-Phe adsorption phenomenon. Modeling results indicate that two and three L-Phe layers were arranged depending on the tested adsorption systems. The estimated number of L-Phe molecules per leading adsorption site varied from 1.71 to 2.09 and from 1.76 to 1.86 for systems L-Phe-ACK and L-Phe-ACZ, respectively. The results show that a multimolecular adsorption mechanism might connect this amino acid molecule on ACZ and ACK surfaces in a non-parallel location. These parameters changed as follows, according to the adsorbed quantity at saturation analysis: Q (L-Phe-ACK) ˃ Q (L-Phe-ACZ). This indicates that ACK material was more efficient and valuable for L-Phe adsorption than ACZ. It was also shown that the adsorption capacity decreases as the temperature increases, proving the exothermicity of the adsorption process. This analytical substantiation is confirmed by calculating the binding energies, suggesting the occurrence of physical bonds between L-Phe amino acid molecules and ACK/ACZ binding sites and among L-Phe-L-Phe molecules. Pore size distribution was interpreted and calculated by applying the Kelvin theory to data from single adsorption isotherms. All used temperatures depicted a distribution of pores below 2 nm. The docking analysis involving L-Phe and the ACZ and ACK adsorbents reveal a significant resemblance in how receptors detect ligands. Consequently, the findings from the docking process confirm that the calculated binding affinities fall within the spectrum of adsorption energy.

METHODS

This study analyzed the adsorption capacity of the L-Phe through a model proposed by statistical physics formalism. Molecular docking was used to determine the various types of interactions between the two activated carbons. Two aspects, including orientation of L-Phe on the site, number of molecules per site n, interaction energy, density of receptor site, and adsorption capacity, were discussed to elucidate the influence of activation on the two adsorbents.

摘要

背景

在这项关于L-苯丙氨酸(L-Phe)在四种温度(293 - 313 K)下在两种改性低活性碳(ACK和ACZ)上吸附的对比研究中,研究了吸附的空间和能量特征。开发了一个涉及单层和双层吸附情况的先进统计物理多层模型来解释L-Phe的吸附现象。建模结果表明,根据测试的吸附系统,会排列两层和三层L-Phe。对于L-Phe-ACK和L-Phe-ACZ系统,每个主要吸附位点的L-Phe分子估计数量分别从1.71到2.09以及从1.76到1.86不等。结果表明,多分子吸附机制可能将这种氨基酸分子以非平行位置连接在ACZ和ACK表面。根据饱和分析时的吸附量,这些参数变化如下:Q(L-Phe-ACK)>Q(L-Phe-ACZ)。这表明ACK材料对L-Phe的吸附比ACZ更高效且更有价值。还表明吸附容量随温度升高而降低,证明了吸附过程的放热性。通过计算结合能证实了这一分析依据,表明在L-Phe氨基酸分子与ACK/ACZ结合位点之间以及L-Phe-L-Phe分子之间存在物理键。通过将开尔文理论应用于单吸附等温线数据来解释和计算孔径分布。所有使用的温度都显示出孔径分布在2 nm以下。涉及L-Phe与ACZ和ACK吸附剂的对接分析揭示了受体检测配体方式的显著相似性。因此,对接过程的结果证实计算出的结合亲和力落在吸附能范围内。

方法

本研究通过统计物理形式主义提出的模型分析了L-Phe的吸附容量。使用分子对接来确定两种活性炭之间的各种相互作用类型。讨论了两个方面,包括L-Phe在位点上的取向、每个位点的分子数n、相互作用能、受体位点密度和吸附容量,以阐明活化对两种吸附剂的影响。

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