Akhdar Hanan, Alotaibi Rawan
Department of Physics, Faculty of Science, Imam Mohammad Ibn Saud Islamic University (IMSIU), Riyadh 11623, Saudi Arabia.
Polymers (Basel). 2023 Apr 21;15(8):1973. doi: 10.3390/polym15081973.
Polymers are widely used materials that have many medical and industrial applications. Some polymers have even been introduced as radiation-shielding materials; therefore, many studies are focusing on new polymers and their interactions with photons and neutrons. Research has recently focused on the theoretical estimation of the shielding effectiveness of Polyimide doped with different composites. It is well known that theoretical studies on the shielding properties of different materials through modeling and simulation have many benefits, as they help scientists to choose the right shielding material for a specific application, and they are also much more cost-effective and take much less time compared to experimental studies. In this study, Polyimide (CHNO) was investigated. It is a high-performance polymer, well known for its outstanding chemical and thermal stability, as well as for its high mechanical resistance. Because of its exceptional properties, it is used in high-end applications. The performance of Polyimide and Polyimide doped with different weight fractions of composites (5, 10, 15, 20 and 25 wt.%) as a shielding material against photons and neutrons were investigated using a Monte Carlo-based simulation toolkit Geant4 within a wide range of energies of both photons and neutrons from 10 to 2000 KeVs. Polyimide can be considered a good neutron shielding material, and its photon shielding abilities could be further enhanced when adding different high atomic number composites to it. The results showed that Au and Ag gave the best results in terms of the photon shielding properties, while ZnO and TiO had the least negative effect on the neutron shielding properties. The results also indicate that Geant4 is a very reliable tool when it comes to evaluating the shielding properties against photons and neutrons of any material.
聚合物是广泛使用的材料,在医学和工业领域有许多应用。一些聚合物甚至已被用作辐射屏蔽材料;因此,许多研究都集中在新型聚合物及其与光子和中子的相互作用上。最近的研究集中在对掺杂不同复合材料的聚酰亚胺屏蔽效能的理论估计上。众所周知,通过建模和模拟对不同材料的屏蔽性能进行理论研究有很多好处,因为它们有助于科学家为特定应用选择合适的屏蔽材料,而且与实验研究相比,它们更具成本效益且耗时更少。在本研究中,对聚酰亚胺(CHNO)进行了研究。它是一种高性能聚合物,以其出色的化学和热稳定性以及高机械抗性而闻名。由于其优异的性能,它被用于高端应用。使用基于蒙特卡罗的模拟工具包Geant4,在10至2000千电子伏特的光子和中子的宽能量范围内,研究了聚酰亚胺以及掺杂不同重量分数(5、10、15、20和25重量%)复合材料的聚酰亚胺作为光子和中子屏蔽材料的性能。聚酰亚胺可被视为一种良好的中子屏蔽材料,当添加不同的高原子序数复合材料时,其光子屏蔽能力可进一步提高。结果表明,就光子屏蔽性能而言,金和银给出了最佳结果,而氧化锌和二氧化钛对中子屏蔽性能的负面影响最小。结果还表明,在评估任何材料对光子和中子的屏蔽性能时,Geant4是一个非常可靠的工具。