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Corrosion prevention of commercial alloys by air-water interface grown edge on oriented ultrathin squaraine film

机译:通过生长的空气-水界面定向的超薄方石英薄膜边缘防止商业合金腐蚀

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摘要

Copper is one of the most demanded commercial metal/alloys in world market. The demand for copper in industries such as electrical, electronics, automobile, telecommunications, defence, etc. as well as in daily life has escalated in the recent years due to its versatile physical and chemical properties. However destruction of copper surface by any means, preferably corrosion, can limit its vast application. For protection from corrosion, various techniques are used to coat metal substrates with passivating materials. These techniques are either complex as well as expensive, or provide incomplete protection in acid media. To address these issues, floating film transfer method (FFTM) is utilized in this work for obtaining ultrathin film of squaraine (passivating molecule) as well as their easy and fast transfer over copper substrate. The squaraine film is deposited on copper substrate in layers, viz., 1 to 4 layers. The corrosion behavior is examined in 0.1 M HCl using electrochemical techniques as well as surface characterization techniques, which portray that copper corrosion is hampered in harmony with the layers deposited. Nearly 40% corrosion protection is reached for copper coated with 1 layer of squaraine. However, the protection is amplified up to 98% with 4 layers of squaraine, which clearly substantiates the supremacy of this coating method over reported methods of protection. This technique and the material (squaraine) are both for the first time being used in the field of corrosion protection. The easy growth of ultrathin film at air-water interface as well as its rapid transfer over substrate promotes use of FFTM for efficient corrosion protection on industrial scale.
机译:铜是世界市场上最需要的商业金属/合金之一。近年来,由于其广泛的物理和化学特性,对诸如电气,电子,汽车,电信,国防等行业以及日常生活中的铜的需求已经增长。但是,通过任何方式(最好是腐蚀)破坏铜表面会限制其广泛应用。为了防止腐蚀,可以使用各种技术用钝化材料涂覆金属基材。这些技术既复杂又昂贵,或者在酸性介质中提供不完全的保护。为了解决这些问题,在这项工作中采用了浮膜转移方法(FFTM)来获得方酸超强薄膜(钝化分子),以及它们在铜基板上的简便快速转移。方酸铝膜分1至4层沉积在铜基板上。使用电化学技术和表面表征技术在0.1 M HCl中检查了腐蚀行为,这表明铜腐蚀与沉积层的协调受到阻碍。涂有一层方酸锌的铜几乎达到40%的腐蚀防护。但是,使用4层方酸锌可将保护作用放大至98%,这明显证实了这种涂覆方法优于已报道的保护方法。该技术和材料(方酸)都是首次在腐蚀防护领域使用。超薄膜在空气-水界面处的容易生长以及在基材上的快速转移促进了FFTM在工业规模上有效防腐的应用。

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