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Gd2O3-Al2O3-C Ternary Aerogel/Mullite Fiber Composites for High-Efficiency Synergistic Thermal Insulation and Neutron
Nana Hou1, Kaikai Wang1, Yu Miao1
1Department of Nuclear Science and Technology, College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 211100, China.
Abstract:
High-performance neutron shielding materials are essential for advanced nuclear energy technologies. However, it remains a challenge to integrate high thermal insulation and neutron shielding capabilities. In this work, mullite fiber mats with good thermal insulation properties and stability were used as the reinforcing skeleton. First, Gd2O3-Al2O3 binary aerogels were in situ synthesized on the skeleton via the sol-gel and ambient pressure drying method. Subsequently, the organic precursor derivatives in the aerogel were converted into carbon through high-temperature calcination, thereby obtaining Gd2O3-Al2O3-C ternary aerogel/mullite fiber composites. Benefiting from the effective suppression of heat transfer by the micronano pores and the high neutron absorption capability of Gd2O3, the as-prepared composites achieved high-efficiency synergistic thermal insulation and neutron shielding. At a thickness of 10 mm, the composites achieved a thermal conductivity of 0.041 W/(m·K) and a thermal neutron shielding efficiency of 88.15%. This provides a novel strategy for the design and development of multifunctional protective materials for thermal insulation and radiation shielding in the field of nuclear energy.
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