Abd-El-Nabey B A, El-Housseiny S, Abd-El-Khalek D E, Abd-El-Fatah M A
Faculty of Science, Chemistry Department, Alexandria University, Alexandria, Egypt.
Faculty of Sciences, Chemistry Department, Jouf University, Sakakah, Saudi Arabia.
Sci Rep. 2025 Jul 16;15(1):25874. doi: 10.1038/s41598-025-08684-x.
A one-step pyrolysis was used to synthesize ginger carbon quantum dots (G-CDs), which were described using XPS, FTIR, XRD, EDX, and TEM to validate the different integrated functions, particle dimension, morphology, component composition, amorphous construction, and bonding types. The dual action of the synthesized G-CDs as corrosion and scale inhibitors was examined. Scale inhibition characteristics of G-CDs for precipitation of BaSO were investigated using the conductivity technique. Results indicated that G-CDs have an effective inhibition of 84.9% at 200 mg/L. Application of Langmuir and Flory-Huygens isotherms along with the Kinetic-thermodynamic model on the experimental findings demonstrated the suitability and applicability of all of them, yielding a (∆G°) ≃ - 26.7 kJ/mole, suggesting that G-CD adsorption on the scale particle surface is cooperative, involving both chemical and physical interactions, with the physical aspect being the dominant mechanism. SEM and XRD studies indicated that the scale particles (BaSO) were deformed when precipitated in the presence of G-CDs due to their adsorption on the particles' surfaces.On the other hand, the inhibition characteristics for the steel corrosion in NaCl solution (0.5 M) were examined using EIS and mass loss method techniques that revealed that G-CDs act as high-efficiency eco-friendly corrosion inhibitor giving 98.3% at 400 mg/L. However, the PDP results indicated that the G-CDs act as mixed-type inhibitor. Application of the adsorption isotherms on the experimental corrosion inhibition data revealed that the three models are applicable, giving (∆G°) values equal to - 28.2 kJ/mole, which means that the adsorption process of the G-CQDs is cooperative (physical/chemical). XPS, XRD, EDX and TEM analysis of the steel's surface upon submersion in a NaCl solution (0.5 M) + 400 mg/L G-CDs solution for 1 h revealed that the corrosion products completely disappeared, the carbon dots were closely attached to the surface of the steel, and the Cl⁻ ions were displaced from the steel surface, which confirms that the G-CDs function as a superior ecologically friendly inhibitor for mitigating the steel corrosion. A mechanism of the inhibition of corrosion of steel in a NaCl solution (0.5 M) by G-CDs was reported, which suggests that in the absence of G-CDs in chloride media, the specific adsorption of the chloride ions on the steel surface and catalyse the charge transfer cathodic and anodic corrosion reactions. However, in the presence of G-CDs in the environment, the strong active absorbable carbon dots surface particles displace the Cl ions from the steel surface, mitigating the catalytic effect causing inhibition of the corrosion process.
采用一步热解法合成了姜炭量子点(G-CDs),并利用XPS、FTIR、XRD、EDX和TEM对其进行表征,以验证其不同的综合功能、颗粒尺寸、形态、成分组成、非晶结构和键合类型。研究了合成的G-CDs作为缓蚀剂和阻垢剂的双重作用。采用电导率技术研究了G-CDs对硫酸钡沉淀的阻垢特性。结果表明,在200mg/L时,G-CDs的有效抑制率为84.9%。将Langmuir和Flory-Huygens等温线以及动力学-热力学模型应用于实验结果,证明了它们的适用性,得到的(∆G°)≃ -26.7kJ/mol,表明G-CD在垢颗粒表面的吸附是协同的,涉及化学和物理相互作用,其中物理作用是主要机制。SEM和XRD研究表明,在G-CDs存在下沉淀时,垢颗粒(硫酸钡)由于吸附在颗粒表面而发生变形。另一方面,采用EIS和失重法技术研究了G-CDs在NaCl溶液(0.5M)中对钢腐蚀的抑制特性,结果表明,G-CDs在400mg/L时作为高效环保缓蚀剂的抑制率为98.3%。然而,动电位极化曲线(PDP)结果表明,G-CDs作为混合型缓蚀剂。将吸附等温线应用于实验缓蚀数据表明,这三种模型均适用,得到的(∆G°)值等于-28.2kJ/mol,这意味着G-CQDs的吸附过程是协同的(物理/化学)。将钢浸泡在NaCl溶液(0.5M)+400mg/L G-CDs溶液中1小时后,对钢表面进行XPS、XRD、EDX和TEM分析,结果表明腐蚀产物完全消失,碳点紧密附着在钢表面,Cl⁻离子从钢表面被置换,这证实了G-CDs作为一种优异的生态友好型缓蚀剂可减轻钢的腐蚀。报道了G-CDs在NaCl溶液(0.5M)中抑制钢腐蚀的机理,这表明在氯化物介质中不存在G-CDs时,氯离子在钢表面的特异性吸附会催化电荷转移阴极和阳极腐蚀反应。然而,在环境中存在G-CDs时,具有强活性的可吸附碳点表面颗粒会将Cl离子从钢表面置换出来,减轻催化作用,从而抑制腐蚀过程。