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研究电离辐射对生物医学应用中感兴趣的离子交换膜的影响。

Examining the Effect of Ionizing Radiations in Ion-Exchange Membranes of Interest in Biomedical Applications.

作者信息

Lara Íñigo, Freijanes Yago, Muñoz Sagrario, Ruiz Gema, Barragán V María

机构信息

Department of Structure of Matter, Thermal Physics and Electronics, Faculty of Physics, Complutense University of Madrid, 28040 Madrid, Spain.

Radiotherapy Service at the General University Hospital Gregorio Marañón, 28007 Madrid, Spain.

出版信息

Membranes (Basel). 2023 Jun 10;13(6):592. doi: 10.3390/membranes13060592.

Abstract

The possible effects of ionizing radiation on four commercial membranes, which are typically used as electrolytes in fuel cells supplying energy to a huge variety of medical implantable devices, were studied. These devices could obtain energy from the biological environment through a glucose fuel cell, which could be a good candidate to replace conventional batteries as a power source. In these applications, materials with high radiation stability for the fuel cell elements would be disabled. The polymeric membrane is one of the key elements in fuel cells. Membrane swelling properties are very important because they affect the fuel cell's performance. For this reason, the swelling behaviors of various samples of each membrane irradiated with different doses were analyzed. Each sample was irradiated with a typical dose of a conventional radiotherapy treatment, and the regular conditions of the biological working environment were simulated. The target was to examine the possible effect of the received radiation on the membranes. The results show that the ionizing radiation influenced their swelling properties, as well as that dimensional changes were dependent on the existence of reinforcement, be it internal or external, in the membrane structure.

摘要

研究了电离辐射对四种商用膜的可能影响,这四种膜通常用作燃料电池的电解质,为各种各样的医用可植入设备提供能量。这些设备可以通过葡萄糖燃料电池从生物环境中获取能量,葡萄糖燃料电池有望成为替代传统电池的良好电源。在这些应用中,燃料电池元件具有高辐射稳定性的材料将无法使用。聚合物膜是燃料电池的关键元件之一。膜的溶胀性能非常重要,因为它们会影响燃料电池的性能。因此,分析了不同剂量辐照下每种膜的各种样品的溶胀行为。每个样品都接受了常规放射治疗的典型剂量辐照,并模拟了生物工作环境的正常条件。目的是研究接受的辐射对膜的可能影响。结果表明,电离辐射影响了它们的溶胀性能,而且尺寸变化取决于膜结构中增强材料的存在,无论是内部还是外部的增强材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d064/10300967/db3ac9d8e858/membranes-13-00592-g001.jpg

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