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Christopher D. Taylor
Ohio State University
151Publications
18H-index
1,534Citations
Publications 151
Newest
Published on May 4, 2019in Corrosion 1.86
Huibin Ke (OSU: Ohio State University), Christopher D. Taylor18
Estimated H-index: 18
(OSU: Ohio State University)
The utility of density functional theory (DFT) for modeling in materials science and engineering with a focus on corrosion, is broadly introduced, along with an introduction to the technique, its i...
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Published on Jun 1, 2019in Electrochemistry Communications 4.20
J.A. Yuwono (UNSW: University of New South Wales), Christopher D. Taylor18
Estimated H-index: 18
(OSU: Ohio State University)
+ 2 AuthorsS. Fajardo12
Estimated H-index: 12
(CSIC: Spanish National Research Council)
Abstract Despite the growing interest in Mg and its alloys, their use has been largely limited due to their high reactivity in aqueous environments. Improving the understanding of the basic principles of Mg corrosion represents the first step to explain and, eventually, improve the corrosion behaviour of Mg alloys. Herein an original mechanistic surface kinetic DFT model that clarifies the mechanism of anomalous HE on anodically polarised Mg is presented. In accordance with several experimental ...
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Published on Feb 1, 2019in Corrosion Science 6.36
Jodie A. Yuwono4
Estimated H-index: 4
(OSU: Ohio State University),
Nick Birbilis57
Estimated H-index: 57
(ANU: Australian National University)
+ 3 AuthorsNikhil V. Medhekar19
Estimated H-index: 19
(Monash University, Clayton campus)
Abstract In this study, first-principles density functional theory (DFT) calculations are performed to investigate the contribution of each individual reaction at the magnesium/water interface. Thermodynamic and kinetic models derived from the DFT-calculated parameters are used to describe interdependent reactions at the interface and the resultant magnesium electrochemical activity at different pH and potentials. These models are able to rationalise experimental findings, such as those obtained...
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Published on Dec 1, 2018
Christopher D. Taylor18
Estimated H-index: 18
(OSU: Ohio State University),
Pin Lu7
Estimated H-index: 7
+ 2 AuthorsJohn R. Scully32
Estimated H-index: 32
(UVA: University of Virginia)
Structure, composition and surface properties dictate corrosion resistance in any given environment. The degrees of freedom in alloy design are too numerous in emerging materials such as high entropy alloys and bulk metallic glasses for the use of high-throughput methods or trial and error. We review three domains of knowledge that can be applied towards the goal of corrosion resistant alloy (CRA) design: (a) the aggregation of knowledge gained through experience in developing CRAs empirically, ...
7 Citations Source Cite
Published on Jul 20, 2018in Corrosion 1.86
나라시 스리다르23
Estimated H-index: 23
,
Christopher D. Taylor18
Estimated H-index: 18
,
Ramgopal Thodla5
Estimated H-index: 5
Published on Jul 20, 2018in Corrosion 1.86
John Wolodko1
Estimated H-index: 1
(U of A: University of Alberta),
Tesfaalem Haile1
Estimated H-index: 1
+ 5 AuthorsTorben Lund Skovhus8
Estimated H-index: 8
(VIA University College)
Published on Jul 20, 2018in Corrosion 1.86
Christopher D. Taylor18
Estimated H-index: 18
(DNV GL),
Leslie G. Bland1
Estimated H-index: 1
(OSU: Ohio State University)
+ 4 AuthorsKenneth Smith
Published on Jun 28, 2018in Journal of Applied Physics 2.33
Adib Samin5
Estimated H-index: 5
(LANL: Los Alamos National Laboratory),
Christopher D. Taylor18
Estimated H-index: 18
(OSU: Ohio State University)
Corrosion resistance of industrial metals and alloys is largely imparted by the formation of a stable oxide film on the surface that kinetically limits the process of corrosion. Developing a fundamental knowledge of the processes involved in the oxide layer formation and growth is thus important for designing corrosion-resistant alloys. In this work, a model for oxide growth tracking two species (the oxygen and metal vacancies) was presented. The model accounted for species transport and interfa...
1 Citations Source Cite
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