New lead-free chemistry for in-situ monitoring of advanced nuclear power plant

Autor: Lexing Liang, Xiuling Wang, Cong Zhang, Kailei Lu, Guangfan Tan, Yanhao Dong, Yanli Shi, Jianqi Qi, Tiecheng Lu
Jazyk: angličtina
Rok vydání: 2024
Předmět:
Zdroj: Advanced Powder Materials, Vol 3, Iss 5, Pp 100229- (2024)
Druh dokumentu: article
ISSN: 2772-834X
DOI: 10.1016/j.apmate.2024.100229
Popis: Nuclear power is essential for sustainable energy infrastructure and economic development, necessitating materials for high-radiation environments that can facilitate visualization and observation. Conventional lead glass is inadequate for future requirements due to radiation-induced darkening, poor mechanical properties, and toxicity. Therefore, there is urgent to find new window materials that offer multi-ionization shielding (particularly against deep-penetrating gamma ray, γ, and neutron, n, radiations), desirable opto-mechanical properties, service stability against darkening, and non-toxicity. In this study, we report a family of transparent rare-earth pyrochlore ceramics LaxGd2−xZr2O7, offering unique chemo-physical properties that are ideal for robust radiation shielding windows. Remarkably, we demonstrated the capability of maintaining high transparency under heavy-dose exposure to 1000 ​kGy 60Co γ radiation. We observed the service stability against radiation darkening can be greatly enhanced with La-rich compositions, while Gd-rich compositions undergo shallow darkening that can be reversibly recovered under visible light. This behavior is attributed to mitigated oxygen migration from 48f to 8a in La-rich compositions, which have high pyrochlore phase stability and well-ordered atomic structures, and reversible oxygen migration between 48f and 8a in Gd-rich compositions, which remain active at room temperature. Our proposal and demonstration unlock ample opportunities in designing functional transparent ceramics as window materials for demanding applications in high-radiation environments.
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