Xiang Wenjun, Zhao Chen, Zhang Chaoyang, Wang Xingwei, Li Xiaoli, Liu Siyu, Sun Chufeng, Yu Qiangliang, Yu Bo, Cai Meirong, Shi Lei
School of Chemical Engineering, Northwest Minzu University, 730030 Lanzhou, China.
State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, 730000 Lanzhou, Gansu, China.
Langmuir. 2024 Jan 9;40(1):389-402. doi: 10.1021/acs.langmuir.3c02632. Epub 2023 Dec 20.
A halogen-free quaternary ammonium-based ionic liquid functionalized with benzotriazole, BTA-16-BTA, was synthesized. Its anticorrosion effects on Q235 steel were evaluated in two different acids (6 M HCl or 1 M HPO) by weight loss and electrochemical tests. BTA-16-BTA shows the best performance at 30 °C with the highest inhibition efficiencies of 98.84% in 6 M HCl and 96.40% in 1 M HPO. The adsorption behavior of BTA-16-BTA molecules on Q235 steel in HCl solution obeys the Langmuir isotherm with an adsorption energy of about -40 kJ·mol, which implies chemisorption. Quantum chemistry calculation indicates that the chemical adsorption originated from the injection of π-electrons from inhibitor molecules into empty 3d orbitals of Fe atoms. The tight adsorption of inhibitor molecules and associated dehydration of the steel surface promoted the corrosion inhibition in HCl solutions. In HPO solutions, passivation by phosphate anions and adsorption of inhibitor molecules contributed synergistically to the excellent anticorrosion performance.
合成了一种用苯并三唑官能化的无卤季铵基离子液体BTA-16-BTA。通过失重法和电化学测试评估了其在两种不同酸(6 M HCl或1 M HPO)中对Q235钢的防腐效果。BTA-16-BTA在30°C时表现出最佳性能,在6 M HCl中的最高缓蚀效率为98.84%,在1 M HPO中的最高缓蚀效率为96.40%。BTA-16-BTA分子在HCl溶液中对Q235钢的吸附行为符合Langmuir等温线,吸附能约为-40 kJ·mol,这意味着化学吸附。量子化学计算表明,化学吸附源于抑制剂分子的π电子注入到Fe原子的空3d轨道中。抑制剂分子的紧密吸附和钢表面相关的脱水作用促进了HCl溶液中的缓蚀作用。在HPO溶液中,磷酸根阴离子的钝化作用和抑制剂分子的吸附作用协同促成了优异的防腐性能。