DFT-Based Theoretical Study on Label-Free SERS Detection of Type B Fumonisins: New Insights into Molecular–Substrate Interactions and Quantification Strategies

IF 3.9 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY Langmuir Pub Date : 2025-03-10 DOI:10.1021/acs.langmuir.5c00252
Shuai Lian, Zhen Fan, Hui Li, Xiaoqiong Li, Xuefei Lv
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Abstract

In this study, we employed density functional theory to investigate the interactions between type B fumonisins (FB1, FB2, and FB3) and silver-enhancing substrates in the surface-enhanced Raman scattering effect. Theoretical calculations of the molecular electrostatic potential reveal that the oxygen atoms at the terminal of the tricarboxylic acid structure in all three molecules exhibit the strongest electronegativity, suggesting these sites as potential active sites for molecular-substrate interactions. Molecular-Ag20 vertex-binding/surface-binding complex models were constructed based on possible docking modes between the molecule and the substrate, and binding energies were calculated. The binding energy results confirm the stable existence of the complexes. By analyzing the frontier molecular orbitals and charge density difference maps of the molecules and complexes, charge transfer excitation near the active sites between the molecule and Ag20 was confirmed. Analysis of the theoretical Raman spectra of vertex-binding/surface-binding complexes revealed selective enhancement phenomena associated with different docking modes. These findings provide a feasible strategy for the simultaneous quantification of the overall content of type B fumonisins and the individual components of FB1, FB2, and FB3 in a single detection. Finally, based on the characteristic frequency variations of the three molecules, a theoretically reproducible, highly sensitive, and high-throughput label-free detection strategy is proposed for analyzing type B fumonisins in complex sample systems. This study not only enhances our understanding of the physical mechanisms underlying molecular-substrate interactions in the SERS effect but also demonstrates the theoretical feasibility of using SERS for simultaneous quantification of different type B fumonisins in complex sample systems. Moreover, it provides a promising and potentially effective label-free sensing strategy for detecting substances with similar molecular structures.

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基于ddf的B型伏马菌素无标记SERS检测理论研究:分子-底物相互作用和定量策略的新见解
在本研究中,我们采用密度泛函理论研究了B型伏马菌素(FB1, FB2和FB3)与银增强底物在表面增强拉曼散射效应中的相互作用。分子静电电位的理论计算表明,三羧酸结构末端的氧原子具有最强的电负性,表明这些位点是分子-底物相互作用的潜在活性位点。基于分子与底物之间可能的对接模式,构建了分子- ag20顶点结合/表面结合复合物模型,并计算结合能。结合能结果证实了配合物的稳定存在。通过分析分子和配合物的前沿分子轨道和电荷密度差图,证实了分子与Ag20之间在活性位点附近存在电荷转移激发。顶点结合/表面结合复合物的理论拉曼光谱分析揭示了不同对接模式下的选择性增强现象。这些发现为同时定量B型伏马菌素的总含量和FB1、FB2和FB3的单个成分提供了可行的策略。最后,基于这三种分子的特征频率变化,提出了一种理论上可重复、高灵敏度、高通量的无标记检测策略,用于分析复杂样品系统中的B型福马菌素。该研究不仅加深了我们对SERS效应中分子-底物相互作用的物理机制的理解,而且证明了在复杂样品系统中使用SERS同时定量不同B型伏马菌素的理论可行性。此外,它为检测具有相似分子结构的物质提供了一种有前途和潜在有效的无标签传感策略。
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来源期刊
Langmuir
Langmuir 化学-材料科学:综合
CiteScore
6.50
自引率
10.30%
发文量
1464
审稿时长
2.1 months
期刊介绍: Langmuir is an interdisciplinary journal publishing articles in the following subject categories: Colloids: surfactants and self-assembly, dispersions, emulsions, foams Interfaces: adsorption, reactions, films, forces Biological Interfaces: biocolloids, biomolecular and biomimetic materials Materials: nano- and mesostructured materials, polymers, gels, liquid crystals Electrochemistry: interfacial charge transfer, charge transport, electrocatalysis, electrokinetic phenomena, bioelectrochemistry Devices and Applications: sensors, fluidics, patterning, catalysis, photonic crystals However, when high-impact, original work is submitted that does not fit within the above categories, decisions to accept or decline such papers will be based on one criteria: What Would Irving Do? Langmuir ranks #2 in citations out of 136 journals in the category of Physical Chemistry with 113,157 total citations. The journal received an Impact Factor of 4.384*. This journal is also indexed in the categories of Materials Science (ranked #1) and Multidisciplinary Chemistry (ranked #5).
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