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4-氨基--[2(二乙氨基)乙基]苯甲酰胺四苯硼酸盐离子缔合物的合成:表征、抗菌活性及计算研究。

Synthesis of 4-Amino--[2 (diethylamino)Ethyl]Benzamide Tetraphenylborate Ion-Associate Complex: Characterization, Antibacterial and Computational Study.

机构信息

Department of Pharmaceutical Chemistry, College of Pharmacy, King Saud University, P.O. Box 2457, Riyadh 11451, Saudi Arabia.

Department of Pharmaceutics, College of Pharmacy, King Saud University, P.O. Box 2457, Riyadh 11451, Saudi Arabia.

出版信息

Molecules. 2023 Feb 28;28(5):2256. doi: 10.3390/molecules28052256.

Abstract

The 4-amino-N-[2 (diethylamino) ethyl] benzamide (procainamide)-tetraphenylborate complex was synthesized by reacting sodium tetraphenyl borate with 4-amino-N-[2 (diethylamino) ethyl] benzamide, chloride salt, and procainamide in deionized water at room temperature through an ion-associate reaction (green chemistry) at room temperature, and characterized by several physicochemical methods. The formation of ion-associate complex between bio-active molecules and/or organic molecules is crucial to comprehending the relationships between bioactive molecules and receptor interactions. The solid complex was characterized by infrared spectra, NMR, elemental analysis, and mass spectrometry, indicating the formation of ion-associate or ion-pair complex. The complex under study was examined for antibacterial activity. The ground state electronic characteristics of the S1 and S2 complex configurations were computed using the density functional theory (DFT) approach, using B3LYP level 6-311 G(d,p) basis sets. R = 0.9765 and 0.9556, respectively, indicate a strong correlation between the observed and theoretical H-NMR, and the relative error of vibrational frequencies for both configurations was acceptable, as well. HOMO and LUMO frontier molecular orbitals and molecular electrostatics using the optimized were used to obtain a potential map of the chemical. The → π* UV absorption peak of the UV cutoff edge was detected for both configurations of the complex. Spectroscopic methods were structures used to characterize the structure (FT-IR and 1HNMR). In the ground state, DFT/B3LYP/6-311G(d,p) basis sets were used to determine the electrical and geometric properties of the S1 and S2 configurations of the title complex. Comparing the observed and calculated values for the S1 and S2 forms, the HOMO-LUMO energy gap of compounds was 3182 and 3231 eV, respectively. The small energy gap between HOMO and LUMO indicated that the compound was stable. In addition, the MEP reveals that positive potential sites were around the PR molecule, whereas negative potential sites were surrounding the TPB site of atoms. The UV absorption of both arrangements is comparable to the experimental UV spectrum.

摘要

4-氨基-N-[2(二乙氨基)乙基]苯甲酰胺(普鲁卡因胺)-四苯硼酸盐配合物是通过在室温下将四苯硼酸钠与 4-氨基-N-[2(二乙氨基)乙基]苯甲酰胺、盐酸盐和普鲁卡因胺在去离子水中反应,通过室温下的离子缔合反应(绿色化学)合成的,并通过多种物理化学方法进行了表征。生物活性分子和/或有机分子之间的离子缔合配合物的形成对于理解生物活性分子与受体相互作用之间的关系至关重要。固体配合物通过红外光谱、NMR、元素分析和质谱进行了表征,表明形成了离子缔合物或离子对配合物。研究了该配合物的抗菌活性。使用密度泛函理论(DFT)方法,在 B3LYP 水平 6-311 G(d,p)基组上计算了 S1 和 S2 配合物构型的基态电子特性。分别为 0.9765 和 0.9556,表明观察到的和理论上的 H-NMR 之间存在很强的相关性,并且两种构型的振动频率的相对误差也是可以接受的。使用优化后的 HOMO 和 LUMO 前线分子轨道和分子静电势获得了化学势的势能图。在 S1 和 S2 构型中均检测到了 UV 截止边缘的 → π*紫外吸收峰。使用光谱方法对结构进行了表征(FT-IR 和 1HNMR)。在基态下,使用 DFT/B3LYP/6-311G(d,p)基组确定了标题配合物的 S1 和 S2 构型的电和几何性质。比较 S1 和 S2 形式的观察值和计算值,化合物的 HOMO-LUMO 能隙分别为 3182 和 3231 eV。HOMO 和 LUMO 之间的小能隙表明该化合物是稳定的。此外,MEP 表明正电势位在 PR 分子周围,而负电势位在 TPB 原子周围。两种构型的紫外吸收均与实验紫外光谱相当。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b03/10005259/cb8773669b04/molecules-28-02256-sch001.jpg

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