Chemistry Department, Faculty of Science, New Valley University, El-Kharga, 72511, Egypt.
Mining, Petroleum and Metallurgical Engineering Department, Faculty of Engineering, Cairo University, Cairo, Egypt.
Sci Rep. 2024 Jan 4;14(1):470. doi: 10.1038/s41598-023-51044-w.
A novel Schiff base [4-(morpholin-4-yl) benzylidenyl]thiosemicarbazide (MBT) was created by reaction condensation. The molecules of the products were verified by IR, HNMR, MS, and elemental techniques. The synergistic effect of KI with novel MBT on 304 stainless steel (SS) in acidic has been investigated experimentally and theoretically using DFT. The findings demonstrate that restriction efficacy on 304 SS improved with rising inhibitor concentrations, and this benefit was attributed to synergy when KI was injected. From EIS results, IE % increased with a higher concentration of MBT only and MBT + KI (from 100 to 600 ppm). MBT maximum IE % was 84.98%, at 600 ppm. MBT + KI, due to the I ions synergistic effect, showed an IE% of about 95.48%, at 600 ppm. The adsorptions of MBT and MBT + KI on the surfaces of 304 SS are strongly fitted Langmuir adsorption isotherms. Thermodynamic parameters (K, ΔG) were utilized. According to polarization findings, MBT behaves as a mixed-category antagonist. The Schiff base MBT was screened for its in vitro antimicrobial activities against some strains of bacteria and fungi. The result revealed that MBT proved to be an excellent candidate as a fungal agent being able to inhibit Aspergillus flavus.
一种新型的席夫碱[4-(吗啉-4-基)苯亚甲基]硫代缩氨基脲(MBT)通过反应缩合合成。通过红外光谱(IR)、核磁共振氢谱(HNMR)、质谱(MS)和元素分析技术对产物的分子进行了验证。使用密度泛函理论(DFT)从实验和理论上研究了新型 MBT 与碘化钾(KI)在酸性介质中对 304 不锈钢(SS)的协同作用。研究结果表明,随着抑制剂浓度的升高,对 304 SS 的抑制效果得到改善,这得益于 KI 的协同作用。从 EIS 结果来看,只有 MBT 和 MBT+KI(从 100 到 600ppm)的浓度增加时,IE%才会增加。在 600ppm 时,MBT 的最大 IE%为 84.98%。由于 I 离子的协同效应,MBT+KI 的 IE%约为 95.48%,在 600ppm 时。MBT 和 MBT+KI 在 304 SS 表面的吸附强烈符合 Langmuir 吸附等温线。利用热力学参数(K、ΔG)进行了拟合。根据极化研究结果,MBT 表现为混合类型的拮抗剂。对该席夫碱 MBT 进行了体外抗菌活性筛选,以测试其对一些细菌和真菌菌株的抑制作用。结果表明,MBT 有望成为一种优秀的真菌抑制剂,能够抑制黄曲霉。