Hassan Almila, Numin Mohd Sofi, Jumbri Khairulazhar, Kee Kok Eng, Borhan Noorazlenawati, Nik Mohamed Daud Nik Mohd Radi, Mohammed Nor Azmi, Suhor Muhammad Firdaus, Abdul Wahab Roswanira
Department of Fundamental and Applied Sciences, Universiti Teknologi PETRONAS, Seri Iskandar, Perak 32610, Malaysia.
Department of Mechanical Engineering, Universiti Teknologi PETRONAS, Seri Iskandar, Perak 32610, Malaysia.
ACS Omega. 2023 Jun 21;8(26):23945-23952. doi: 10.1021/acsomega.3c02435. eCollection 2023 Jul 4.
Several new possible biobased corrosion inhibitors derived from fatty hydrazide derivatives were analyzed using quantum chemical calculations via the density functional theory method to investigate the chemical reactivity and inhibition efficiencies against corrosion in metal steel. The study confirmed that the fatty hydrazides showed significant inhibitive performances based on their electronic properties, revealing band gap energies of 5.20 to 7.61 eV between the HOMO and LUMO. These energy differences decreased from 4.40 to 7.20 eV when combined with substituents of varying chemical compositions, structures, and functional groups, associated with higher inhibition efficiency. The most promising fatty hydrazide derivatives are terephthalic acid dihydrazide combined with a long-chain alkyl chain, which resulted in the lowest energy difference of 4.40 eV. Further inspection showed that the fatty hydrazide derivatives' inhibitive performances increased with increasing carbon chain length [from 4 (4-s-4) to 6 (6-s-6)], with a concomitant increase and decrease in hydroxyl and carbonyl groups, respectively. Fatty hydrazide derivatives containing aromatic rings also showed increased inhibition efficiencies following their contribution to improve the compounds' binding ability and adsorption on the metal surface. Overall, all data were consistent with previously reported findings, envisaging the potential of fatty hydrazide derivatives as effective corrosion inhibitors.
通过密度泛函理论方法,利用量子化学计算分析了几种新的源自脂肪酰肼衍生物的生物基缓蚀剂,以研究其化学反应性及对金属钢腐蚀的抑制效率。研究证实,基于其电子性质,脂肪酰肼表现出显著的抑制性能,其最高占据分子轨道(HOMO)和最低未占分子轨道(LUMO)之间的带隙能量为5.20至7.61电子伏特。当与具有不同化学组成、结构和官能团的取代基结合时,这些能量差从4.40降至7.20电子伏特,抑制效率更高。最有前景的脂肪酰肼衍生物是对苯二甲酸二酰肼与长链烷基链结合,其能量差最低,为4.40电子伏特。进一步研究表明,脂肪酰肼衍生物的抑制性能随着碳链长度增加而增强[从4(4-s-4)到6(6-s-6)],同时羟基和羰基分别相应增加和减少。含有芳环的脂肪酰肼衍生物由于有助于提高化合物的结合能力和在金属表面的吸附,也表现出更高的抑制效率。总体而言,所有数据与先前报道的结果一致,表明脂肪酰肼衍生物作为有效缓蚀剂的潜力。