First Principles Study of Atomic Oxygen Adsorption on Austenitic Stainless Steels Surfaces: A Theoretical Study

Author:

Zhu Xinghua1,Liu Zhou1,Feng Qingguo1,Huang Zhiyong2,Zhu Xiaoyang2,Xiao Lei2,He Jianguo3,Wang Ning4,Xu Yi1

Affiliation:

1. Key Laboratory of Advanced Technologies of Materials, Ministry of Education, School of Materials Science and Engineering, Southwest Jiaotong University, Chengdu 610031, China

2. Sichuan Liuhe Special Metal Materials, Co., Ltd., Mianyang 621700, China

3. China Iron & Steel Research Institute Group, Beijing 100081, China

4. Sichuan Haitaipu Technology, Co., Ltd., Mianyang 621700, China

Abstract

The adsorption of atomic oxygen and surfaces is the starting point and key point to understand the oxidation process of stainless steel. Nowadays, numerous studies have focused on the metal composition of stainless steel, while the mechanism of non-metallic elements affecting atomic oxygen adsorption needs to be clarified. Here, adsorption of atomic oxygen on the surface of pure γ-Fe and H/N-containing austenitic stainless steels was investigated using first principles. We found that stable adsorption (>6 eV) can occur on pure γ-Fe and H/N-containing austenitic surfaces. In this process, the presence of hydrogen and nitrogen both enhance the adsorption of atomic oxygen, but their influence mechanisms are in opposition. Hydrogen enhances adsorption by breaking metal bonds near the surface, while nitrogen promotes adsorption by enhancing structural stability. The adsorption promotion of hydrogen (−6.7629 eV) is stronger than that of nitrogen (−6.6374 eV), but it can reduce the stability of the system. The introduction of appropriate nitrogen atoms may be beneficial to the improvement of corrosion resistance. This study provides valid data and a unique perspective on the erosion protection of atomic oxygen on austenitic surfaces.

Funder

Science and Technology on Reactor Fuel and Materials Laboratory

Key R&D projects in the field of high and new Technology of Sichuan Province

National Key Project of Research and Development Program of China

Sichuan Liuhe Special Metal Materials Co. LTD

Publisher

MDPI AG

Subject

Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces

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