NUCLEAR TECHNIQUES, Volume. 47, Issue 10, 100001(2024)

Research status of density functional theory in corrosion of reactor alloy materials

Chuankai SHEN1, Baoliang ZHANG1、*, Wenguan LIU2、**, Hanzi ZHANG1, Menghe TU1, Bin LONG1, and Hui WANG1
Author Affiliations
  • 1China Institute of Atomic Energy, Beijing 102413, China
  • 2Sun Yat-Sen University, Zhuhai 519082, China
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    After decades of research, the problems and behavior of the corrosion of reactor alloy materials under service conditions are clearly understood. However, some problems in corrosion of reactor materials have not been clarified, including the critical corrosion process of the reactor materials under operational conditions, the role of a single factor in the corrosion process, and the prediction of corrosion behaviors of new materials in extreme environments. The density functional theory (DFT), which is based on quantum mechanics, can be employed to accurately predict the motion process of atoms and the change in the relevant energy within a very short period. The DFT has become an important auxiliary method for investigating the corrosion process of reactor alloy materials in recent years and can help solve the above problems. In this paper, the DFT is firstly introduced, which mainly includes the theoretical basis, development process, and mainstream computational software. Then, a comprehensive discussion and analysis are conducted on the current research status of DFT applied to the corrosion of reactor alloy materials, including the adsorption, separation, combination, and internal diffusion of the reactor alloy material surfaces in the environments of water-cooled reactor, liquid-metal-cooled reactor, and molten salt reactor. Finally, future development trends of DFT application in the corrosion of reactor alloy materials are prospected.

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    Chuankai SHEN, Baoliang ZHANG, Wenguan LIU, Hanzi ZHANG, Menghe TU, Bin LONG, Hui WANG. Research status of density functional theory in corrosion of reactor alloy materials[J]. NUCLEAR TECHNIQUES, 2024, 47(10): 100001

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    Paper Information

    Category: INVITED REVIEW

    Received: Oct. 20, 2023

    Accepted: --

    Published Online: Dec. 13, 2024

    The Author Email: ZHANG Baoliang (ZHANGBaoliang), LIU Wenguan (LIUWenguan)

    DOI:10.11889/j.0253-3219.2024.hjs.47.100001

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