γ-Ray Irradiation Effect on MCF Rubber Solar Cells with both Photovoltaics and Sensing Involving Semiconductors Fabricated under Magnetic and Electric Fields

K. Shimada, Ryo Kato, Ryo Ikeda, H. Kikura, H. Takahashi
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引用次数: 2

Abstract

For cases in which a robot with installed solar cells and a sensor operates in a nuclear reactor building or in space for extravehicular activity, we require elastic and extensible solar cells. More than two different types of sensing are also required, minimally with photovoltaics and built-in electricity. Magnetic compound fluid (MCF) rubber solar cells are made of rubber, so they are elastic and extensible as well as sensitive. To achieve flexibility and an effective photovoltaic effect, MCF rubber solar cells must include both soluble and insoluble rubbers, Fe3O4, TiO2, Na2WO4∙2H2O, etc. On the basis of this constitution, we propose a consummate fabrication process for MCF rubber solar cells. The characteristics of these cells result from the semiconductor-like role of the molecules of TiO2, Fe3O4, Ni, Na2WO4∙2H2O, polydimethylsiloxane (PDMS), natural rubber (NR), oleic acid, polyvinyl alcohol (PVA), water and magnetic cluster involved in the MCF rubber. Their tendencies can be deduced by synthesizing knowledge about the enhancement of the reverse-bias saturation current IS and the diode ideality factor N, with conventional knowledge about the semiconductor affected by γ-irradiation and the attenuation of the photon energy of γ-rays.
磁场和电场下制备的MCF橡胶太阳能电池的γ射线辐照效应
对于安装了太阳能电池和传感器的机器人在核反应堆建筑或太空中进行舱外活动的情况,我们需要弹性和可扩展的太阳能电池。还需要两种以上不同类型的传感,最低限度地使用光伏和内置电力。磁性复合流体(MCF)橡胶太阳能电池是由橡胶制成的,因此它们具有弹性、可扩展性和敏感性。为了实现灵活性和有效的光伏效应,MCF橡胶太阳能电池必须包括可溶性和不可溶性橡胶、Fe3O4、TiO2、Na2WO4∙2H2O等。在此基础上,我们提出了一种完善的MCF橡胶太阳电池制造工艺。这些电池的特性是由TiO2、Fe3O4、Ni、Na2WO4∙2H2O、聚二甲基硅氧烷(PDMS)、天然橡胶(NR)、油酸、聚乙烯醇(PVA)、水和MCF橡胶中涉及的磁性团簇分子的半导体样作用产生的。它们的趋势可以通过综合关于反向偏置饱和电流IS和二极管理想因子N的增强的知识,以及关于受γ辐射影响的半导体和γ射线光子能量衰减的传统知识来推导。
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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