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Influence of DFT Functionals and Solvation Models on the Prediction of Far-Infrared Spectra of Pt-Based Anticancer Drugs: Why Do Different Complexes Require Different Levels of Theory?

机译:DFT功能和溶剂化模型对基于Pt的抗癌药物远红外光谱预测的影响:为什么不同的复合物需要不同的理论水平?

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Computational modeling was applied to far-infrared (FIR) spectra of Pt-based anticancer drugs to study the hydrolysis of these important molecules. Here, we present a study that investigates the influence of different factors—basis sets on non-Pt atoms, relativistic effective core potentials (RECPs) on the Pt atom, density functional theory (DFT) functionals, and solvation models—on the prediction of FIR spectra of two Pt-based anticancer drugs, cisplatin and carboplatin. Geometry optimizations and frequency calculations were performed with a range of functionals (PBE, PBE0, M06-L, and M06-2X), Dunning’s correlation-consisted basis sets (VDZ, VTZ, aVDZ, and aVTZ), RECPs (VDZ-pp, VTZ-pp, aVDZ-pp, and aVTZ-pp), and solvation models (IEFPCM, CPCM, and SMD). The best combination of the basis set/DFT functional/solvation model was identified for each anticancer drug by comparing with experimentally available FIR spectra. Different combinations were established for cisplatin and carboplatin, which was rationalized by means of the partial atomic charge scheme, ChelpG, that was utilized to study the charge transfer between the Pt ion and ligands in both cisplatin and carboplatin.
机译:将计算模型应用于基于Pt的抗癌药的远红外(FIR)光谱,以研究这些重要分子的水解作用。在这里,我们进行了一项研究,研究了不同因素对Pt原子的预测的影响-非Pt原子的基础集,Pt原子的相对论有效核心电势(RECPs),密度泛函理论(DFT)泛函和溶剂化模型-两种基于Pt的抗癌药物顺铂和卡铂的FIR光谱。使用一系列功能(PBE,PBE0,M06-L和M06-2X),Dunning的相关相关基集(VDZ,VTZ,aVDZ和aVTZ),RECP(VDZ-pp, VTZ-pp,aVDZ-pp和aVTZ-pp)和溶剂化模型(IEFPCM,CPCM和SMD)。通过与实验可获得的FIR光谱进行比较,确定了每种抗癌药物的基础集/ DFT功能/溶剂化模型的最佳组合。建立了顺铂和卡铂的不同组合,并通过部分原子电荷方案ChelpG对其进行了合理化,该方案用于研究顺铂和卡铂中Pt离子与配体之间的电荷转移。

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