Laboratory of Organic Chemistry, Catalysis and Environment Laboratory, Faculty of Science, Ibn Tofail University, Kenitra City, Morocco.
Laboratory of Marine Biotechnology and Environment-CNRST Labeled Research Unit, Faculty of Sciences, Chouaib Doukkali University, BP 20, 24000, El Jadida, Morocco.
J Mol Model. 2024 Apr 26;30(5):151. doi: 10.1007/s00894-024-05936-x.
The controlled slow evaporation process conducted at room temperature has produced a novel hybrid material denoted as (2-hydroxyethyl) trimethylammonium dihydrogen phosphate [2-HDETDHP] (CHNO, HPO), synthesized through the solution growth method. X-ray crystallography analysis reveals a triclinic structure with a filling rate of P and a Z value of 2. This hybrid material displays noteworthy absorption characteristics in the middle and far ultraviolet regions. UV-visible spectroscopy further establishes its transparency in the visible and near-visible ultraviolet domains. FT-IR spectroscopy examines various vibration modes, elucidating their relationships with the functional groups within the structure. Two- and three-dimensional fingerprint maps, coupled with three-dimensional crystal structures through Hirshfeld Surface Analysis, unveil the dominance of O•••H and H•••H interactions in the structure, comprising 49.40% and 50.40%, respectively. Fingerprint plots derived from the Hirshfeld surface assess the percentages of hydrogen bonding interactions, with 80.6% attributed to a fragment patch. The experiment of antimicrobial efficacy of a synthesized product, conducted in triplicate, demonstrated the synthesized product's potential antimicrobial activity.
Hirshfeld surfaces are employed to investigate intermolecular hydrogen bonding, specifically within single phosphate groups. The molecular structure of 2-HDETDHP was refined using single-crystal X-ray analysis, while its optical characteristics were examined through UV-visible spectroscopy. FT-IR spectroscopy is employed for the assignment of molecular vibrations of functional groups in the affined structure. Quantum calculations were executed with the GAUSSIAN 09 software package at B3LYP/6-311G level of theory, to optimize the molecular geometries. The antimicrobial efficacy of a synthesized product was evaluated using the disc diffusion method against antibiotic-resistant Candida albicans, Candida tropicalis, Aspergillus niger, Staphylococcus aureus, and Escherichia coli. Microorganisms were cultured on nutrient agar, and inhibition zones were measured after incubation, with streptomycin and amphotericin as positive controls.
通过室温下的控制缓慢蒸发过程,产生了一种新型的混合材料,标记为(2-羟乙基)三甲基铵二氢磷酸盐[2-HDETDHP](CHNO,HPO),通过溶液生长法合成。X 射线晶体学分析揭示了具有填充率 P 和 Z 值为 2 的三斜结构。该混合材料在中紫外和远紫外区域表现出显著的吸收特性。紫外可见光谱进一步确定了其在可见光和近紫外可见区域的透明度。FT-IR 光谱检查了各种振动模式,阐明了它们与结构内官能团的关系。二维和三维指纹图谱,以及通过 Hirshfeld 表面分析的三维晶体结构,揭示了结构中 O•••H 和 H•••H 相互作用的主导地位,分别占 49.40%和 50.40%。从 Hirshfeld 表面得出的指纹图评估氢键相互作用的百分比,其中 80.6%归因于片段补丁。合成产物抗菌功效的实验在重复三次的情况下进行,证明了合成产物具有潜在的抗菌活性。
使用 Hirshfeld 表面研究分子间氢键,特别是在单个磷酸盐基团内。使用单晶 X 射线分析对 2-HDETDHP 的分子结构进行了细化,同时通过紫外可见光谱对其光学特性进行了研究。FT-IR 光谱用于确定相关结构中官能团的分子振动。使用 GAUSSIAN 09 软件包在 B3LYP/6-311G 理论水平上执行量子计算,以优化分子几何形状。使用圆盘扩散法评估合成产物对耐抗生素白色念珠菌、热带念珠菌、黑曲霉、金黄色葡萄球菌和大肠杆菌的抗菌功效。微生物在营养琼脂上培养,孵育后测量抑菌圈,以链霉素和两性霉素作为阳性对照。