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  4. Wettability, electron work function and corrosion behavior of CoCrFeMnNi high entropy alloy films
 
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Wettability, electron work function and corrosion behavior of CoCrFeMnNi high entropy alloy films

Journal
Surface and Coatings Technology
Journal Volume
400
Date Issued
2020
Author(s)
Wang, Z.
Li, D.Y.
Yao, Y.-Y.
Kuo, Y.-L.
Hsueh, C.-H.
CHUN-HWAY HSUEH  
DOI
10.1016/j.surfcoat.2020.126222
URI
https://www.scopus.com/inward/record.url?eid=2-s2.0-85088816889&partnerID=40&md5=38f714ef43311c272c2416ef551983a8
https://scholars.lib.ntu.edu.tw/handle/123456789/546656
Abstract
CoCrFeMnNi high entropy alloy films (HEAFs) with different thicknesses (250 to 1400 nm) and structures were fabricated by magnetron sputtering to study the relation among the wettability, surface electron activity and corrosion resistance of the films. The XRD pattern showed the transition from the amorphous phase to face-centered cubic (FCC) structure with the increasing film thickness. The SEM micrographs of film surfaces showed changes from the morphology consisting of sphere-like islands to ligament-like islands with the increasing film thickness. The surface wettability, electron work function (EWF) and corrosion resistance of the CoCrFeMnNi HEAFs were studied using contact angle measurements, scanning Kelvin probe and electrochemical system, respectively. The film surface with the higher EWF is more stable with a higher degree of inertness, ascribed to its less active surface electrons, leading to the lower surface activity which contributes to the lower polarity, higher hydrophobicity and corrosion resistance. The 550 nm-thick film with the smallest grain size at the nano-scale and the highest density of grain boundaries showed the highest EWF (4.2 eV), the greatest hydrophobicity (96° water contact angle) and the outstanding corrosion resistance (Ecorr = −301 mV and Icorr = 0.481 μA/cm2).
SDGs

[SDGs]SDG14

Type
journal article

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