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Study on Synergistic Mechanism of Inhibitor Mixture Based on Electron Transfer Behavior

机译:基于电子转移行为的缓蚀剂协同作用机理研究

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摘要

Mixing is an important method to improve the performance of surfactants due to their synergistic effect. The changes in bonding interaction and adsorption structure of IM and OP molecules before and after co-adsorbed on Fe(001) surface is calculated by DFTB+ method. It is found that mixture enable the inhibitor molecules with higher EHOMO donate more electrons while the inhibitor molecules with lower ELUMO accept more electrons, which strengthens the bonding interaction of both inhibitor agent and inhibitor additive with metal surface. Meanwhile, water molecules in the compact layer of double electric layer are repulsed and the charge transfer resistance during the corrosion process increases. Accordingly, the correlation between the frontier orbital (EHOMO and ELUMO of inhibitor molecules and the Fermi level of metal) and inhibition efficiency is determined. Finally, we propose a frontier orbital matching principle for the synergistic effect of inhibitors, which is verified by electrochemical experiments. This frontier orbital matching principle provides an effective quantum chemistry calculation method for the optimal selection of inhibitor mixture.
机译:由于它们的协同作用,混合是提高表面活性剂性能的重要方法。用DFTB +方法计算了共存于Fe(001)表面前后IM和OP分子的键相互作用和吸附结构的变化。结果发现,混合物使具有较高EHOMO的抑制剂分子能提供更多的电子,而具有较低ELUMO的抑制剂分子则能吸收更多的电子,从而增强了抑制剂和抑制剂添加剂与金属表面的键合作用。同时,双电层的致密层中的水分子被排斥并且在腐蚀过程中的电荷转移阻力增加。因此,确定了边界轨道(抑制剂分子的EHOMO和ELUMO与金属的费米能级)和抑制效率之间的相关性。最后,我们提出了抑制剂协同作用的前沿轨道匹配原理,该原理已通过电化学实验验证。这一前沿的轨道匹配原理为抑制剂混合物的最佳选择提供了一种有效的量子化学计算方法。

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