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◆ Langmuir2025-11-07· Corrosion

Improved Corrosion Resistance of Q235 Steel in 3.5 wt% NaCl Solution by N, P Co-Doped Carbon Dots with Efficient Antibacterial and Fluorescent Properties

Zhi-Xiong Liu, Haobing Yang, Qingkai Chu, Jun Qin, Yunfeng Bai, Feng Feng, Xianhui Zhang, Shu Tian

原始摘要(英文原文)· Original abstract
The carbon steel is susceptible to corrosion in a humid and complex marine environment, resulting in economic losses and environmental pollution. Harmful microorganisms, such as metal-reducing bacteria, can induce Microbiologically Influenced Corrosion (MIC), which accelerates the corrosion rate and shortens the service life of metallic instruments. In this paper, nitrogen and phosphorus codoped CDs (N, P-CDs) were prepared through a commonly used solvothermal method with ammonium citrate tribasic and diammonium hydrogen phosphate as precursors. Structural characterizations indicated that N, P-CDs contained vast heteroatoms such as N, O, and P atoms and heteroatom-containing functionalities. The corrosion inhibition performance of N, P-CDs on Q235 steel in 3.5 wt % NaCl solution was evaluated. Electrochemical experiments revealed that the corrosion inhibition efficiency was 97.8% in a 150 mg/L N, P-CDs solution at 298 K. Morphology and adsorption isotherm demonstrated that the N, P-CDs protected Q235 steel by forming a composite film through physical and chemical adsorption. The N, P-CDs were used as a fluorescence probe to detect the corrosion process of QS. The N, P-CDs showed substantial dose-dependent bactericidal effects against P. aeruginosa and S. aureus within the 1–500 ppm range. The minimum inhibitory concentration (MIC) of the N, P-CDs toward P. aeruginosa and S. aureus was 1.95 mg mL –1 . The N, P-CDs showed a bactericidal rate of 99.06% and 88.79% toward P. aeruginosa and S. aureus at 500 ppm, respectively. Therefore, the as-prepared N, P-CDs provide great potential as ecofriendly corrosion inhibitors with efficient antibacterial and fluorescent properties for Q235 steel protection.
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Improved Corrosion Resistance of Q235 Steel in 3.5 wt% NaCl Solution by N, P Co-Doped Carbon Dots with Efficient Antibacterial and Fluorescent Properties — 科研速览 Science Skim