Rabiei Negar, Gholamzadeh Leila, Aminian Mohsen Khajeh, Sharghi Hamed
Department of Physics, Yazd University, Yazd, Iran.
Radiat Environ Biophys. 2025 Mar;64(1):151-161. doi: 10.1007/s00411-024-01103-1. Epub 2025 Jan 10.
Polymer nanocomposites have been investigated as lightweight and suitable alternatives to lead-based clothing. The present study aims to fabricate flexible, lead-free, X-ray-shielding composites using a polyvinyl chloride (PVC) matrix and different nanostructures. Four different nanostructures containing impure tungsten oxide, tungsten oxide (WO), barium tungstate (BaWO), and bismuth tungstate (BiWO) were synthesized through various methods. Subsequently, their morphological characteristics were determined by X-ray diffraction (XRD) and scanning electron microscopy (SEM). Also, energy-dispersive X-ray spectroscopy (EDS) analysis was performed to establish the presence of the filler in the PVC matrix. Two different weight ratios of these nanostructures (20% wt and 50% wt) were used to produce the PVC composites. To investigate attenuation parameters, the prepared composites were irradiated with X-rays at tube voltages of 40, 80, and 120 kV. The results showed that the PVC composites containing 20% wt BiWO had the highest linear attenuation coefficient (µ) at all three voltages. Furthermore, they had the lowest half-value layer (HVL), tenth-value layer (TVL), and 0.5 mm equivalent lead thickness values at each of the three voltages. The PVC composites containing 50% wt BiWO had attenuation coefficients greater than those reported for PbO at all three X-ray voltages. Among the studied tungsten nanostructures, bismuth tungstate had the best attenuation performance for X-ray protection. Additionally, this composite is light, flexible, and non-toxic, making it a promising alternative to lead aprons.
聚合物纳米复合材料已被研究作为铅基防护服的轻质且合适的替代品。本研究旨在使用聚氯乙烯(PVC)基体和不同的纳米结构制备柔性、无铅的X射线屏蔽复合材料。通过各种方法合成了四种不同的纳米结构,分别是含不纯氧化钨、氧化钨(WO)、钨酸钡(BaWO)和钨酸铋(BiWO)。随后,通过X射线衍射(XRD)和扫描电子显微镜(SEM)确定了它们的形态特征。此外,还进行了能量色散X射线光谱(EDS)分析,以确定PVC基体中填料的存在。使用这些纳米结构的两种不同重量比(20%重量和50%重量)来制备PVC复合材料。为了研究衰减参数,在40、80和120 kV的管电压下用X射线照射制备的复合材料。结果表明,含20%重量BiWO的PVC复合材料在所有三个电压下具有最高的线性衰减系数(µ)。此外,它们在三个电压下各自的半值层(HVL)、十分之一值层(TVL)和0.5毫米等效铅厚度值最低。含50%重量BiWO的PVC复合材料在所有三个X射线电压下的衰减系数均大于氧化铅的报道值。在所研究的钨纳米结构中,钨酸铋在X射线防护方面具有最佳的衰减性能。此外,这种复合材料轻质、柔性且无毒,使其成为铅围裙的有前途的替代品。