化学
超极化率
结晶学
十二面体
选择性
硫脲
立体化学
尿素
晶体结构
Crystal(编程语言)
密度泛函理论
非线性光学
方形金字塔分子几何
计算化学
色散(光学)
航程(航空)
反式效应
作者
Sara Emad,Ali El-Dissouky,Hemmat A. Elbadawy,M Ali,Assem Barakat,Matti Haukka,Rajendhraprasad Tatikonda,Ayman El‐ Faham,Saied M. Soliman,Amal Yousri
摘要
ABSTRACT The [Cd(DPPT)Cl 2 ] ( 1 ) and [Cd(DMPT)(NO 3 ) 2 (H 2 O)].H 2 O ( 2 ) complexes of the 1,3,5‐triazine ligands DPPT and DMPT were reported. 1 has slightly distorted square pyramidal geometry around the Cd(II) ion, while 2 adopted distorted triangular dodecahedral coordination geometry. Hirshfeld energy framework analysis showed that electrostatic and dispersion energies have a significant influence in stabilizing their crystal lattice. DFT calculations predicted that 1 and 2 have 36 and 35 times greater hyperpolarizability than urea suggesting the new Cd(II) complexes as promising candidates for nonlinear optical applications. Both complexes exhibit broad‐spectrum activity against tested bacteria with inhibition zone diameters (IZDs) within the range of 17–35 mm and fungi (IZD = 15–20 mm), except for 1 against A. fumigatus . Both complexes outperformed the positive control gentamicin toward S. aureus . While gentamicin produced a 24 mm inhibition zone, complexes 1 and 2 achieved zones of 35 and 31 mm, respectively. Additionally, the Cd(II) complexes effectively inhibited the growth of HCT‐116 and A‐549 tumor cells. 1 is more active (IC 50 = 11.44 ± 0.23 and 7.86 ± 0.14 μ M) than 2 (IC 50 = 16.30 ± 0.49 and 32.50 ± 1.12 μ M) against these cells, respectively. Furthermore, the selectivity indices of Cd(II) complexes exceeded 1, suggesting their potential as antineoplastic factors.
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