苯并三唑
吸附
腐蚀
缓蚀剂
密度泛函理论
X射线光电子能谱
单层
扫描隧道显微镜
化学物理
工作职能
计算化学
铜
材料科学
化学
结晶学
化学工程
金属
物理化学
纳米技术
有机化学
工程类
生物化学
作者
Marco Turano,Marc Walker,Federico Grillo,Chiara Gattinoni,Gregory Hunt,Paul M. Kirkman,Neville V. Richardson,Christopher J. Baddeley,Giovanni Costantini
标识
DOI:10.1016/j.corsci.2022.110589
摘要
The interaction of benzotriazole (BTAH) with Cu(100) has been studied as a function of BTAH exposure in a joint experimental and theoretical effort. Scanning tunnelling microscopy (STM), X-ray photoelectron spectroscopy (XPS), high resolution electron energy loss spectroscopy (HREELS) and density functional theory (DFT) calculations have been combined to elucidate the structural and chemical characteristics of this system. BTAH is found to deprotonate upon adsorption on the copper surface and to adopt an orientation that depends on the molecular coverage. Benzotriazolate (BTA) species initially lie with their planes parallel to the substrate but, at a higher molecular coverage, a transition occurs to an upright adsorption geometry. Upon increasing the BTAH exposure, different phases of vertically aligned BTAs are observed with increasing molecular densities until a final, self-limiting monolayer is developed. Both theory and experiment agree in identifying CuBTA and Cu(BTA)2 metal-organic complexes as the fundamental building blocks of this monolayer. This work shows several similarities with the results of previous studies on the interaction of benzotriazole with other low Miller index copper surfaces, thereby ideally completing and concluding them. The overall emerging picture constitutes an important starting point for understanding the mechanism for protection of copper from corrosion.
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