离子液体缓蚀剂结构与性能的理论研究

G. Tian, Weizhong Zhou
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引用次数: 1

摘要

采用1-烷基-3-甲基咪唑氯[Cnmim]Cl、1-烷基-3-甲基咪唑醋酸盐[Cnmim]Ac和1-辛基-3-甲基咪唑盐[Omim]Y (n = 2、4、6、8,Y = Cl、BF4、HSO4、Ac和TFO) 3组离子液体作为缓蚀剂对碳钢进行防腐。用密度泛函理论系统分析了这些离子液体的电子结构和反应性、表面能和铁表面的电子结构。随着烷基链长度的增加,[Cnmim]Cl和[Cnmim]Ac体系的最低未占据分子轨道能(ELUMO)、最高已占据分子轨道能(EHOMO)、柔软度(S)和极化率(α)逐渐增大,而电负性(χ)、能隙(ΔE)、硬度(η)、偶极矩(μ)和亲电指数(ω)逐渐减小。对于[Omim]Y体系,离子液体的结构参数差异较大,只是极化率(α)随着烷基链长度的增加而逐渐降低。结果表明:[Cnmim]Cl体系的抑制作用主要为[Cnmim]+阳离子,抑制效果为[C2mim]Cl [C6mim]Ac > [C4mim]Ac > [C2mim]Ac。对于[Omim]Y体系,[Xmim]+阳离子和阴离子(BF4−、HSO4−、Ac−、TfO−)均有抑制作用,抑制效率的大小顺序为[Omim]TfO > [Omim]Ac > [Omim]HSO4 > [Omim]BF4 > [Omim]Cl。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical Study of the Structure and Property of Ionic Liquids as Corrosion Inhibitor
Three sets of ionic liquids such as 1-alkyl-3-methylimidazole chloride [Cnmim]Cl, 1-alkyl-3-methylimidazolium acetate [Cnmim]Ac and 1-octyl-3-methylimidazole salt [Omim]Y (n = 2, 4, 6, 8, and Y = Cl, BF4, HSO4, Ac and TFO) were used as corrosion inhibitor medium for corrosion protection of carbon steel. Electronic structures and reactivity of these ionic liquids, surface energy and electronic structures of the iron surface were systematically analyzed by density functional theory. By increasing the alkyl chain length of the [Cnmim]Cl and [Cnmim]Ac systems, the lowest unoccupied molecular orbital energy (ELUMO), the highest occupied molecular orbital energy (EHOMO), the softness (S) and polarizability (α) increased gradually, whereas electronegativity (χ), energy gap (ΔE), hardness (η), dipole moment (μ)and electrophilic index (ω) gradually decreased. For the [Omim]Y system, the structure parameters of ionic liquids are quite different, and only the polarizability (α) decreases gradually by increasing the length of the alkyl chain. The results show that inhibition is mainly [Cnmim]+ cations of the [Cnmim]Cl system, and the order of inhibition efficiency follows as [C2mim]Cl < [C4mim]Cl < [C6mim]Cl < [C8mim]Cl. Both [Cnmim]+ cations and the Ac− anion have inhibition effect for the [Xmim]Ac system, and the order of inhibition efficiency is [C8mim]Ac > [C6mim]Ac > [C4mim]Ac > [C2mim]Ac. For the [Omim]Y system, [Xmim]+ cations and anions (BF4−, HSO4−, Ac−, TfO−) have inhibition effect, and the order of inhibition efficiency is [Omim]TfO > [Omim]Ac > [Omim]HSO4 > [Omim]BF4 > [Omim]Cl.
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