Faradisa Anindita, N. Darmawan, Z. A. Mas’ud
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引用次数: 0

摘要

腐蚀是金属与其环境之间的物理相互作用,由于化学或电化学反应而导致金属性质的变化。加入缓蚀剂可以降低腐蚀速率。纳米技术在防腐蚀方面的应用是最先进的技术之一,因为几乎所有的结构都依赖于1-2纳米厚的钝化膜的稳定性,它为底层材料提供了稳定性。本文报道了榴莲碳点作为铜腐蚀缓蚀剂的热力学和动力学分析。采用动电位极化法测试其作为缓蚀剂对铜的腐蚀性能并分析其热力学性质。腐蚀的热力学动力学参数为H‡= 60.44 kJmol-1、ΔS‡= -73.9 kJmol-1和ΔG‡= 82.83 kJmol-1,表明c点作为缓蚀剂的存在导致了非自发反应速率的增加(ΔG‡)。样品的活化能值高于空白,表明c点的存在有效地降低了金属的腐蚀速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analisis Termodinamika dan Kinetika Nanopartikel Karbon (C-Dot) dari Buah Durian Sebagai Inhibitor Korosi Tembaga
Corrosion is a physical interaction between the metal and its environment, which results in changes in the metal's properties due to chemical or electrochemical reactions. The corrosion rate can be reduced by adding a corrosion inhibitor. Uses of nanotechnology for corrosion prevention is one of the first technical because almost made structures rely on the stability of a 1–2 nm thick passive film which provides stability to the underlying material. Herein we report the thermodynamic and kinetic analysis of carbon-dots from Durian as inhibitor copper corrosion. To test the anticorrosive performance and analyze thermodynamic properties in its role as a corrosion inhibitor on copper using potentiodynamic polarization. The thermodynamic-kinetic parameters of corrosion obtained values of H‡ = 60.44 kJmol-1, ΔS‡ = -73.9 kJmol-1, and ΔG‡ = 82.83 kJmol-1, show that the attendance of C-dot as a corrosion inhibitor causes a non-spontaneous reaction rate to be proven by increasing spontaneity (ΔG‡). The value of activation energy samples was higher than the blank, indicates the presence of C-dot effective to reduce the rate of corrosion of the metal.
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