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Real-time dissolution of a compositionally complex alloy using inline ICP and correlation with XPS

journal contribution
posted on 2023-10-26, 02:55 authored by Y Qiu, R Liu, T Gengenbach, O Gharbi, S Choudhary, S Thomas, HL Fraser, N Birbilis
The real-time dissolution of the single-phase compositionally complex alloy (CCA), Al1.5TiVCr, was studied using an inline inductively coupled plasma method. Compositionally complex alloys (CCAs), a term encompassing high entropy alloys (HEAs) or multi-principal element alloys (MPEAs), are—in general—noted for their inherently high corrosion resistance. In order to gain an insight into the dissolution of Al1.5TiVCr alloy, atomic emission spectroelectrochemistry was utilised in order to measure the ion dissolution of the alloy during anodic polarisation. It was revealed that incongruent dissolution occurred, with preferential dissolution of Al, and essentially no dissolution of Ti, until the point of alloy breakdown. Results were correlated with X-ray photoelectron spectroscopy, which revealed a complex surface oxide inclusive of unoxidised metal, and metal oxides in disproportion to the bulk alloying element ratio.

History

Journal

npj Materials Degradation

Volume

4

Article number

ARTN 7

Location

London, Eng.

ISSN

2397-2106

eISSN

2397-2106

Language

English

Issue

1

Publisher

NATURE PORTFOLIO