Optical properties and radiation stability of polypropylene modified with MgO nanoparticles

M. Mikhailov, V. A. Goronchko
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Abstract

Polymer composite materials are widely used in spacecraft and stations in thermal control coatings, as sealants, seals, thermal insulation, as well as in many other structures and products. The main characteristic of such materials is the stability of properties and performance characteristics to the action of space factors, among which various types of radiation are the main damaging ones. Therefore, it is relevant to study the influence of electron, proton, solar spectrum quanta on the change in optical, electrical, mechanical, and other properties of polymer composite materials. This paper presents the results of a investigation of the optical properties and radiation stability of nanocomposites based on polypropylene modified by the solid state method with MgO nanoparticles in the concentration range of 1–5 mass.%. Diffuse reflectance spectra were recorded in a vacuum of 2·10-6 Torr before and after electron irradiation (in situ, E = 30 keV, H = 2·1016 cm-2). The analysis of the nature of the absorption bands recorded in the diffuse reflection spectra, which are due to the formation of free radicals: – С3Н5 –, – С3Н6 –, – C4H6 –, – C4H7 –, – C4H8–, – C4H12 –, – C5H7 –, – C5H10 –, was performed. The optimal value of the concentration of nanoparticles was established, equal to 2 mass.%, at which the area of the integral absorption band at 360 nm after irradiation decreased by 3,35 times, its intensity at the maximum by 3,88 times compared with unmodified polypropylene.
纳米氧化镁改性聚丙烯的光学性能和辐射稳定性
高分子复合材料广泛应用于航天器和空间站的热控涂层、密封剂、密封件、绝热材料以及许多其他结构和产品中。这类材料的主要特点是性能的稳定性和对空间因素作用的性能特点,其中各种类型的辐射是主要的破坏因素。因此,研究电子、质子、太阳光谱量子对高分子复合材料光学、电学、力学等性能变化的影响具有重要意义。本文研究了固体法改性聚丙烯基纳米复合材料的光学性能和辐射稳定性,研究了MgO纳米颗粒在1-5质量%范围内的性能。记录电子辐照前后在2·10-6 Torr真空条件下(E = 30 keV, H = 2·1016 cm-2)的漫反射光谱。对自由基形成的漫反射光谱中记录的吸收带性质进行了分析:- С3Н5 -, - С3Н6 -, - C4H6 -, - C4H7 -, - C4H8 -, - C4H12 -, - C5H7 -, - C5H10 -。确定了纳米颗粒的最佳浓度为2质量。%,辐照后360 nm处的积分吸收带面积比未改性聚丙烯减小3.35倍,最大吸收带强度比未改性聚丙烯减小3.88倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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