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Adsorption and protective behavior of BTAH on the initial atmospheric corrosion process of copper under thin film of chloride solutions.


ABSTRACT: The initial corrosion process of copper and the corrosion resistance mechanism of Benzotriazole under chloride-containing thin electrolyte layer (TEL) was investigated. After theoretical calculation and experimental characterization, the forming process of [Cu(I)BTA]n film was chemically adsorbed on copper surface by Cu-N bond tightly; corrosion rate increased as TEL thickness decreased. Whilst, energy distribution plot of electrochemical noise provided the validity of corrosion type, and the purported corrosion energy (Ec) deduced from electrochemical noise was approximately proportion to corrosion rate (1/Rct) with and without the anticorrosion film, which denoted the feasibility to determine corrosion rate by nondestructive on-line monitoring electrochemical noise progress.

SUBMITTER: Yi C 

PROVIDER: S-EPMC5884792 | biostudies-literature | 2018 Apr

REPOSITORIES: biostudies-literature

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Adsorption and protective behavior of BTAH on the initial atmospheric corrosion process of copper under thin film of chloride solutions.

Yi Chenxi C   Zhu Benfeng B   Chen Yu Y   Du Xiaoqing X   Yang Yumeng Y   Liu Jiao J   Zhang Zhao Z  

Scientific reports 20180404 1


The initial corrosion process of copper and the corrosion resistance mechanism of Benzotriazole under chloride-containing thin electrolyte layer (TEL) was investigated. After theoretical calculation and experimental characterization, the forming process of [Cu(I)BTA]<sub>n</sub> film was chemically adsorbed on copper surface by Cu-N bond tightly; corrosion rate increased as TEL thickness decreased. Whilst, energy distribution plot of electrochemical noise provided the validity of corrosion type,  ...[more]

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