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在聚乙烯醇中构建取向二维鱼鳞状Gd@MXene阻挡壁以实现优异的中子屏蔽性能。

Constructing oriented two-dimensional fish scale-like Gd@MXene barrier walls in polyvinyl alcohol to achieve excellent neutron shielding properties.

作者信息

Zhu Xinguo, Zhang Xianlong, Guo Shaoyun

机构信息

The State Key Laboratory of Polymer Materials Engineering, Polymer Research Institute of Sichuan University, Chengdu 610065, China.

出版信息

Nanoscale. 2022 Jul 28;14(29):10581-10593. doi: 10.1039/d2nr02385g.

Abstract

The increasing utilization of nuclear energy and radiation medicine has urged flexible neutron shielding materials for personal protection. However, it was a challenge to manufacture neutron shielding materials with good flexibility and efficient neutron shielding performance. Herein, a new type of hybrid filler named Gd@MXene nanoflakes were successfully synthesized one step-hydrothermal reaction and used for efficient neutron shielding, which was composed of two-dimensional (2D) TiCT-MXene nanoflakes and zero-dimensional Gd nanoparticles (NPs). Inspired by fish scales, the spin coating method was employed to manufacture the film composed of polyvinyl alcohol (PVA) and Gd@MXene, which aligned random Gd@MXene into oriented 2D fish scale-like barrier walls. The 2D fish scale-like Gd@MXene barrier walls scattered the neutron rays multiple times between the nanoflakes, thereby improving the neutron absorption efficiency of Gd atoms. The film showed excellent neutron shielding performance and thermal conductivity; the neutron shielding rate of 20-Gd@MXene/PVA with a thickness of 62 μm was 3.36 times higher than that of pure PVA. The thermal conductivity of Gd@MXene/PVA was nearly 10 times higher than that of pure PVA. This work introduced a novel film for neutron radiation shielding and had potential applications in personal wearable protective equipment.

摘要

核能和放射医学的日益广泛应用促使人们开发用于个人防护的柔性中子屏蔽材料。然而,制造具有良好柔韧性和高效中子屏蔽性能的中子屏蔽材料是一项挑战。在此,通过一步水热反应成功合成了一种名为Gd@MXene纳米片的新型混合填料,并将其用于高效中子屏蔽,它由二维(2D)TiCT-MXene纳米片和零维Gd纳米颗粒(NPs)组成。受鱼鳞启发,采用旋涂法制备了由聚乙烯醇(PVA)和Gd@MXene组成的薄膜,该薄膜将随机排列的Gd@MXene排列成定向的二维鱼鳞状阻挡壁。二维鱼鳞状Gd@MXene阻挡壁使中子射线在纳米片之间多次散射,从而提高了Gd原子的中子吸收效率。该薄膜具有优异的中子屏蔽性能和热导率;厚度为62μm的20-Gd@MXene/PVA的中子屏蔽率比纯PVA高3.36倍。Gd@MXene/PVA的热导率比纯PVA高出近10倍。这项工作介绍了一种用于中子辐射屏蔽的新型薄膜,在个人可穿戴防护设备中具有潜在应用。

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