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An atomic-scale view at Fe4N as hydrogen barrier material

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arxiv 2410.04059 v1 pith:X4FAWU3K submitted 2024-10-05 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords hydrogenfe4nbarrierdiffusionenergymaterialsnitridepermeation
verification ladder T0 review T1 audit T2 compute T3 formal
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Hydrogen, while a promising sustainable energy carrier, presents challenges such as the embrittlement of materials due to its ability to penetrate and weaken their crystal structures. Here we investigate Fe4N nitride layers, formed on iron through a cost-effective gas nitriding process, as an effective hydrogen permeation barrier. A combination of screening using advanced characterization, density functional theory calculations, and hydrogen permeation analysis reveals that a nitride layer reduces hydrogen diffusion by a factor of 20 at room temperature. This reduction is achieved by creating energetically unfavorable states due to stronger H-binding at the surface and high energy barriers for diffusion. The findings demonstrate the potential of Fe4N as a cost-efficient and easy-to-process solution to protecting metallic materials exposed to hydrogen, with great advantages for large-scale applications.

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