E. Kalem, N. K. Kinaytürk, Ş. Aşkar, T. Yeşilkaynak, E. Ağar, F. M. Emen
{"title":"新型苯甲酰硫脲衍生物N-((4-碘苯基)氨基甲酰基)苯甲酰胺的合成、表征、分子模拟及抗菌活性研究","authors":"E. Kalem, N. K. Kinaytürk, Ş. Aşkar, T. Yeşilkaynak, E. Ağar, F. M. Emen","doi":"10.1134/S0022476625080153","DOIUrl":null,"url":null,"abstract":"<p>A novel thiourea derivative <i>N</i>-((4-iodophenyl)carbamothioyl)benzamide (HL) was synthesized and characterized via FTIR, UV-Vis, <sup>1</sup>H NMR and <sup>13</sup>C NMR spectroscopic techniques and elemental analysis techniques. Using density functional theory, quantum chemical calculations of compounds isolated in the ground state at the B3LYP level were performed with the basis of LanL2DZ tuned in the gas phase. The assignment of vibration bands was carried out by performing potential energy distribution analysis. Spectroscopic data were compared both experimentally and theoretically. Energy gap, ionization potential, electron affinity and electronegativity values were calculated using boundary molecular orbitals. Analysis of single crystal X-ray diffraction data was used to obtain the crystal structure of HL. The crystal system of HL is monoclinic, the space group is <i>C</i>2/<i>c</i>, and the crystal parameters are <i>Z</i> = 8, <i>a</i> = 20.3605(15) Å, <i>b</i> = 16.2946(12) Å, <i>c</i> = 10.8646(8) Å. In addition, the thermal properties of HL were examined with the TG/DTG/DTA simultaneous system. The antibacterial activity of HL against ESBL <i>E. coli </i>and MRSA was studied by disc diffusion and broth microdilution tests. In the disc diffusion test, the 1.5 mg/disc dose of HL did not show antibacterial activity against ESBL <i>E.coli</i> and MRSA<i>.</i> On the other hand, in the microdilution test, the MIC value of HL against ESBL <i>E.coli</i> and MRSA were calculated as 12.5 mg/mL and the MBC value as 25 mg/mL.</p>","PeriodicalId":668,"journal":{"name":"Journal of Structural Chemistry","volume":"66 8","pages":"1692 - 1707"},"PeriodicalIF":1.4000,"publicationDate":"2025-08-29","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Novel Benzoylthiourea Derivative N-((4-iodophenyl)carbamothioyl)Benzamide: Synthesis, Characterization, Molecular Modeling and Investigation of Antibacterial Activity\",\"authors\":\"E. Kalem, N. K. Kinaytürk, Ş. Aşkar, T. Yeşilkaynak, E. Ağar, F. M. Emen\",\"doi\":\"10.1134/S0022476625080153\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>A novel thiourea derivative <i>N</i>-((4-iodophenyl)carbamothioyl)benzamide (HL) was synthesized and characterized via FTIR, UV-Vis, <sup>1</sup>H NMR and <sup>13</sup>C NMR spectroscopic techniques and elemental analysis techniques. Using density functional theory, quantum chemical calculations of compounds isolated in the ground state at the B3LYP level were performed with the basis of LanL2DZ tuned in the gas phase. The assignment of vibration bands was carried out by performing potential energy distribution analysis. Spectroscopic data were compared both experimentally and theoretically. Energy gap, ionization potential, electron affinity and electronegativity values were calculated using boundary molecular orbitals. Analysis of single crystal X-ray diffraction data was used to obtain the crystal structure of HL. The crystal system of HL is monoclinic, the space group is <i>C</i>2/<i>c</i>, and the crystal parameters are <i>Z</i> = 8, <i>a</i> = 20.3605(15) Å, <i>b</i> = 16.2946(12) Å, <i>c</i> = 10.8646(8) Å. In addition, the thermal properties of HL were examined with the TG/DTG/DTA simultaneous system. The antibacterial activity of HL against ESBL <i>E. coli </i>and MRSA was studied by disc diffusion and broth microdilution tests. 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引用次数: 0
摘要
合成了一种新型硫脲衍生物N-((4-碘苯基)氨基甲酰基)苯甲酰胺(HL),并通过FTIR、UV-Vis、1H NMR、13C NMR及元素分析技术对其进行了表征。利用密度泛函理论,在气相中调谐LanL2DZ的基础上,对基态中分离的化合物进行了B3LYP能级的量子化学计算。通过势能分布分析进行了振动带的分配。对光谱数据进行了实验和理论比较。利用边界分子轨道计算了能隙、电离势、电子亲和和电负性值。通过对单晶x射线衍射数据的分析,得到了HL的晶体结构。HL的晶体体系为单斜晶系,空间群为C2/c,晶体参数为Z = 8, a = 20.3605(15) Å, b = 16.2946(12) Å, c = 10.8646(8) Å。此外,采用TG/DTG/DTA同步系统对HL的热性能进行了测试。采用圆盘扩散法和肉汤微量稀释法研究了HL对ESBL大肠杆菌和MRSA的抑菌活性。在圆盘扩散试验中,1.5 mg/圆盘剂量的HL对ESBL大肠杆菌和MRSA均无抑菌活性。另一方面,在微量稀释试验中,计算出HL对ESBL大肠杆菌和MRSA的MIC值为12.5 mg/mL, MBC值为25 mg/mL。
Novel Benzoylthiourea Derivative N-((4-iodophenyl)carbamothioyl)Benzamide: Synthesis, Characterization, Molecular Modeling and Investigation of Antibacterial Activity
A novel thiourea derivative N-((4-iodophenyl)carbamothioyl)benzamide (HL) was synthesized and characterized via FTIR, UV-Vis, 1H NMR and 13C NMR spectroscopic techniques and elemental analysis techniques. Using density functional theory, quantum chemical calculations of compounds isolated in the ground state at the B3LYP level were performed with the basis of LanL2DZ tuned in the gas phase. The assignment of vibration bands was carried out by performing potential energy distribution analysis. Spectroscopic data were compared both experimentally and theoretically. Energy gap, ionization potential, electron affinity and electronegativity values were calculated using boundary molecular orbitals. Analysis of single crystal X-ray diffraction data was used to obtain the crystal structure of HL. The crystal system of HL is monoclinic, the space group is C2/c, and the crystal parameters are Z = 8, a = 20.3605(15) Å, b = 16.2946(12) Å, c = 10.8646(8) Å. In addition, the thermal properties of HL were examined with the TG/DTG/DTA simultaneous system. The antibacterial activity of HL against ESBL E. coli and MRSA was studied by disc diffusion and broth microdilution tests. In the disc diffusion test, the 1.5 mg/disc dose of HL did not show antibacterial activity against ESBL E.coli and MRSA. On the other hand, in the microdilution test, the MIC value of HL against ESBL E.coli and MRSA were calculated as 12.5 mg/mL and the MBC value as 25 mg/mL.
期刊介绍:
Journal is an interdisciplinary publication covering all aspects of structural chemistry, including the theory of molecular structure and chemical bond; the use of physical methods to study the electronic and spatial structure of chemical species; structural features of liquids, solutions, surfaces, supramolecular systems, nano- and solid materials; and the crystal structure of solids.