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Spectral Characterization and Molecular Dynamics Simulation of Pesticides Based on Terahertz Time-Domain Spectra Analyses and Density Functional Theory (DFT) Calculations

机译:基于太赫兹时域谱分析和密度泛函理论(DFT)计算的农药的光谱表征及分子动力学模拟

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摘要

This work provides the experimental and theoretical fundamentals for detecting the molecular fingerprints of six kinds of pesticides by using terahertz (THz) time-domain spectroscopy (THz-TDS). The spectra of absorption coefficient and refractive index of the pesticides, chlorpyrifos, fipronil, carbofuran, dimethoate, methomyl, and thidiazuron are obtained in frequencies of 0.1–3.5 THz. To accurately describe the THz spectral characteristics of pesticides, the wavelet threshold de-noising (WTD) method with db 5 wavelet fucntion, 5-layer decomposition, and soft-threshold de-noising was used to eliminate the spectral noise. The spectral baseline correction (SBC) method based on asymmetric least squares smoothing was used to remove the baseline drift. Spectral results show that chlorpyrifo had three characteristic absorption peaks at 1.47, 1.93, and 2.73 THz. Fipronil showed three peaks at 0.76, 1.23, and 2.31 THz. Carbofuran showed two peaks at 2.72 and 3.06 THz. Dimethoate showed three peaks at 1.05, 1.89, and 2.92 THz. Methomyl showed five peaks at 1.01, 1.65, 1.91, 2.72, and 3.20 THz. Thidiazuron showed four peaks at 0.99, 1.57, 2.17, and 2.66 THz. The density functional theory (DFT) of B3LYP/6-31G+(d,p) was applied to simulate the molecular dynamics for peak analyzing of the pesticides based on isolated molecules. The theoretical spectra are in good agreement with the experimental spectra processed by WTD + SBC, which implies the validity of WTD + SBC spectral processing methods and the accuracy of DFT spectral peak analysis. These results support that the combination of THz-TDS and DFT is an effective tool for pesticide fingerprint analysis and the molecular dynamics simulations.
机译:这项工作提供了通过使用Terahertz(THz)时域光谱(THZ-TDS)来检测六种杀虫剂的分子指纹的实验和理论基础。频率为0.1-3.5至Zhz的吸收系数和农药,烟草,氟诺勒,碳呋盐,二甲酯,甲瘤和硫磺隆的吸收系数和折射率的光谱。为了准确描述农药的THz光谱特性,使用具有DB 5小波型,5层分解和软阈值去噪的小波阈值脱光(WTD)方法来消除光谱噪声。基于不对称最小二乘平滑的光谱基线校正(SBC)方法用于去除基线漂移。光谱结果表明,氯吡啶在1.47,1.93和2.73THz处具有三个特征吸收峰。 Fipronil在0.76,1.23和2.31 THz时显示三个峰。 Carbofuran在2.72和3.06 THz上显示出两个峰。二甲酯显示在1.05,1.89和2.92 ZHZ的1.05峰。 Methomyl在1.01,1.65,1.91,2.72和3.20THz时显示五个峰。 Thidiazuron在0.99,1.57,2.17和2.66 THz时显示出四个峰。应用B3LYP / 6-31G +(D,P)的密度函数理论(DFT)来模拟基于分子分子的杀虫剂峰值分析的分子动力学。理论光谱与WTD + SBC处理的实验光谱很好,这意味着WTD + SBC光谱处理方法的有效性和DFT光谱峰值分析的准确性。这些结果支持TDS和DFT的组合是农药指纹分析的有效工具和分子动力学模拟。

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