Wu Shouying, Zhang Wei, Yang Yumin
School of Textile and Clothing, Nantong University, Nantong 226019, China.
Key Laboratory of Neuroregeneration of Jiangsu and Ministry of Education, Co-Innovation Center of Neuroregeneration, NMPA Key Laboratory for Research and Evaluation of Tissue Engineering Technology Products, Nantong University, Nantong 226001, China.
Polymers (Basel). 2024 Nov 25;16(23):3274. doi: 10.3390/polym16233274.
The rapid development of nuclear technology has brought convenience to medical, industrial, and military fields. However, long-term exposure to a radiation environment with high energy will result in irreversible damage, especially to human health. Traditional lead-based radiation protection materials are heavy, inflexible, inconvenient for applications, and could lead to toxicity hazards and environmental problems. Therefore, it has become a mainstream topic to produce high-performance shielding materials that are lightweight, flexible, and wearable. Polymer composites are less dense and have excellent flexibility and processability, drawing great interest from researchers worldwide. Many attempts have been made to blend functional particles and polymeric matrix to produce flexible and wearable protection composites. This paper presents an extensive overview of the current status of studies on lead-free polymer composites as flexible and wearable protection materials. First, novel functional particles and polymer matrices are discussed, and recent results with potential applications are summarised. In addition, novel strategies for preparing polymeric shielding materials and their respective radiation shielding properties are analyzed. Finally, directions for developing lead-free polymeric shielding materials are indicated, and it is beneficial to provide additional references for obtaining flexible, lightweight, and high-performance wearable shielding materials.
核技术的快速发展给医学、工业和军事领域带来了便利。然而,长期暴露于高能辐射环境会导致不可逆转的损害,尤其是对人体健康的损害。传统的铅基辐射防护材料笨重、不灵活,应用不便,还可能导致毒性危害和环境问题。因此,生产轻质、灵活且可穿戴的高性能屏蔽材料已成为一个主流话题。聚合物复合材料密度较小,具有出色的柔韧性和加工性能,引起了全球研究人员的极大兴趣。人们已进行了许多尝试,将功能粒子与聚合物基体共混以制备柔性且可穿戴的防护复合材料。本文对无铅聚合物复合材料作为柔性可穿戴防护材料的研究现状进行了全面概述。首先,讨论了新型功能粒子和聚合物基体,并总结了具有潜在应用价值的近期研究成果。此外,分析了制备聚合物屏蔽材料的新策略及其各自的辐射屏蔽性能。最后,指出了无铅聚合物屏蔽材料的发展方向,这有助于为获得柔性、轻质且高性能的可穿戴屏蔽材料提供更多参考。